Reuse & Permissions

It is not necessary to obtain permission to reuse this article or its components as it is available under the terms of the Creative Commons Attribution 4.0 International license. This license permits unrestricted use, distribution, and reproduction in any medium, provided attribution to the author(s) and the published article's title, journal citation, and DOI are maintained. Please note that some figures may have been included with permission from other third parties. It is your responsibility to obtain the proper permission from the rights holder directly for these figures.

Export citation

Export citation

Choose format for download:

Download Citation
  • Open Access

Evidence of Higgs Boson Inclusive Production at High Transverse Momentum Decaying to a Pair of b-Quarks with the ATLAS Detector

G. Aad102, E. Aakvaag17, B. Abbott121, S. Abdelhameed83b, K. Abeling54, N. J. Abicht48, S. H. Abidi30, M. Aboelela44, A. Aboulhorma36e et al. (ATLAS Collaboration)

A. Aboulhorma36e, H. Abramowicz154, B. S. Acharya68a,68b,b, A. Ackermann62a, C. Adam Bourdarios4, L. Adamczyk85a, S. V. Addepalli146, M. J. Addison101, J. Adelman117, A. Adiguzel22c, T. Adye135, A. A. Affolder137, Y. Afik39, M. N. Agaras13, A. Aggarwal100, C. Agheorghiesei28c, A. Ahmad83a, F. Ahmadov38,c, S. Ahuja95, S. Ahuja165, X. Ai113c, G. Aielli75a,75b, A. Aikot165, M. Ait Tamlihat36e, T. P. A. Åkesson98, D. Akiyama170, N. N. Akolkar25, S. Aktas168, G. L. Alberghi24b, J. Albert167, U. Alberti20, P. Albicocco52, S. Alderweireldt51, Z. L. Alegria122, M. Aleksa37, I. N. Aleksandrov38, C. Alexa28b, T. Alexopoulos10, F. Alfonsi24b, M. Algren55, M. Alhroob169, B. Ali133, H. M. J. Ali91,d, S. Ali32, S. W. Alibocus92, M. Aliev34c, G. Alimonti70a, C. Allaire65, B. M. M. Allbrooke149, D. R. Allen122, J. S. Allen101, J. F. Allen51, C. S. Alley1, E. R. Almazan137, A. Aloisio71a,71b, F. Alonso90, C. Alpigiani140, A. Alvarez Fernandez100, M. Alves Cardoso55, M. G. Alviggi71a,71b, M. Aly101, Y. Amaral Coutinho81b, C. Amelung37, M. Amerl101, T. Amezza128, B. Amini53, K. Amirie158, A. Amirkhanov38, D. Amperiadou155, S. An82, C. Anastopoulos142, T. Andeen11, J. K. Anders92, A. C. Anderson58, A. Andreazza70a,70b, S. Angelidakis9, A. Angerami41, A. V. Anisenkov38, A. Annovi73a, C. Antel37, E. Antipov148, M. Antonelli52, F. Anulli74a, M. Aoki82, T. Aoki156, M. A. Aparo13, L. Aperio Bella47, M. Apicella31, C. Appelt154, A. Apyan27, M. Arampatzi10, S. J. Arbiol Val86, C. Arcangeletti52, A. T. H. Arce50, M. Arcuri43b,43a, J-F. Arguin108, S. Argyropoulos155, J.-H. Arling47, O. Arnaez4, H. Arnold148, G. Artoni74a,74b, H. Asada111, S. Asatryan175, N. A. Asbah37, R. A. Ashby Pickering169, A. M. Aslam95, J. Assahsah36d, K. Assamagan30, R. Astalos29a, K. S. V. Astrand98, S. Atashi162, R. J. Atkin34a, H. Atmani36f, P. A. Atmasiddha129, K. Augsten133, A. D. Auriol40, V. A. Austrup101, A. S. Avad94, G. Avolio37, A. Azzam13, D. Babal29b, H. Bachacou136, K. Bachas155,e, A. Bachiu35, E. Bachmann49, M. J. Backes62a, A. Badea39, T. M. Baer106, M. Bahmani19, D. Bahner53, K. Bai124, L. Baines94, O. K. Baker174, D. Bakshi Gupta8, L. E. Balabram Filho81b, V. Balakrishnan121, R. Balasubramanian4, P. Balek85a, E. Ballabene24b,24a, F. Balli136, L. M. Baltes62a, W. K. Balunas127, I. Bamwidhi83c, E. Banas86, M. Bandieramonte130, A. Bandyopadhyay25, S. Bansal25, L. Barak154, M. Barakat47, E. L. Barberio105, D. Barberis18b, M. Barbero102, M. Z. Barel116, T. Barillari110, M-S. Barisits37, T. Barklow146, P. Baron134, D. A. Baron Moreno101, A. Baroncelli61, A. J. Barr127, J. D. Barr96, F. Barreiro99, J. Barreiro Guimarães da Costa14, M. G. Barros Teixeira131a, F. Bartels62a, R. Bartoldus146, A. E. Barton91, P. Bartos29a, M. Baselga48, S. Bashiri86, A. Bassalat65,f, M. J. Basso159a, S. Bataju44, R. Bate166, R. L. Bates58, S. Batlamous99, M. Battaglia137, D. Battulga19, M. Bauce74a,74b, L. Bauckhage47, P. Bauer25, L. T. Bayer47, L. T. Bazzano Hurrell31, T. Beau128, J. Y. Beaucamp90, S. Beauceron128, P. H. Beauchemin161, P. Bechtle25, H. P. Beck20,g, K. Becker169, A. J. Beddall80, V. A. Bednyakov38, C. P. Bee148, L. J. Beemster16, M. Begalli81d, M. Begel30, J. K. Behr47, J. F. Beirer37, F. Beisiegel25, M. Belfkir83c, G. Bella154, L. Bellagamba24b, A. Bellerive35, C. D. Bellgraph67, P. Bellos21, I. Benaoumeur21, D. Benchekroun36a, F. Bendebba36a, Y. Benhammou154, K. C. Benkendorfer167, L. Beresford47, M. Beretta52, E. Bergeaas Kuutmann163, N. Berger4, B. Bergmann133, J. Beringer18a, M. Berkat136, G. Bernardi5, C. Bernius146, F. U. Bernlochner25, A. Berrocal Guardia13, T. Berry95, P. Berta134, A. Berti131a, R. Bertrand102, S. Bethke110, A. Betti74a,74b, T. F. Beumker173, A. J. Bevan94, L. Bezio55, N. K. Bhalla53, S. Bharthuar110, S. Bhatta148, P. Bhattarai146, Z. M. Bhatti118, K. D. Bhide164, V. S. Bhopatkar122, R. M. Bianchi130, G. Bianco24b,24a, O. Biebel109, M. Biglietti76a, P. Bijl53, C. S. Billingsley44, Y. Bimgdi36f, M. Bindi54, A. Bingham173, A. Bingul22b, C. Bini74a,74b, G. A. Bird33, M. Biros134, S. Biryukov149, T. Bisanz48, E. Bisceglie24b,24a, J. P. Biswal135, D. Biswas144, M. Biyabi14, I. Bloch47, A. Blue58, U. Blumenschein94, V. S. Bobrovnikov38, L. Boccardo56b,56a, M. Boehler53, B. Boehm168, D. Bogavac13, L. S. Boggia128, V. Boisvert95, P. Bokan163, T. Bold85a, M. Bomben5, M. Bona94, M. Boonekamp136, A. G. Borbély58, G. Borissov91, A. Borkar168, D. Bortoletto127, M. Borysova171, D. Boscherini24b, M. Bosman13, K. Bouaouda36a, L. Boudet136, J. Boudreau130, E. V. Bouhova-Thacker91, D. Boumediene40, R. Bouquet56b,56a, A. Boveia120, D. Boye30, I. R. Boyko38, L. Bozianu55, J. Bracinik21, N. Brahimi4, G. Brandt173, O. Brandt33, B. Brau103, R. Brener171, L. Brenner116, R. Brenner163, S. Bressler171, M. Brettell96, G. Brianti116, D. Britton58, D. Britzger110, I. Brock25, R. Brock107, H. Bronson129, G. Brooijmans41, A. J. Brooks67, E. M. Brooks159b, E. Brost30, L. M. Brown167,159a, L. E. Bruce60, T. L. Bruckler127, P. A. Bruckman de Renstrom86, B. Brüers47, A. Bruni24b, G. Bruni24b, D. Brunner46a,46b, M. Bruschi24b, N. Bruscino74a,74b, T. Buanes17, Q. Buat140, D. Buchin110, A. G. Buckley58, J. Bucko134, M. Buhring49, O. Bulekov80, B. A. Bullard146, T. O. Buratovich90, S. Burdin92, C. D. Burgard48, A. M. Burger89, B. Burghgrave8, O. Burlayenko53, J. Burleson164, J. C. Burzynski121, V. Büscher100, P. J. Bussey58, O. But25, J. M. Butler26, C. M. Buttar58, J. M. Butterworth96, P. Butti37, W. Buttinger135, C. J. Buxo Vazquez107, A. R. Buzykaev38, S. Cabrera Urbán165, L. Cadamuro65, H. Cai37, Y. Cai24b,112c,24a, Y. Cai112a, M. A. Cairo129, V. M. M. Cairo37, O. Cakir3a, N. Calace37, P. Calafiura18a, G. Calderini128, P. Calfayan35, L. Calic98, G. Callea58, L. P. Caloba81b, D. Calvet40, S. Calvet40, R. Camacho Toro128, S. Camarda37, D. Camarero Munoz27, P. Camarri75a,75b, C. Camincher37, M. Campanelli96, A. Camplani42, V. Canale71a,71b, A. C. Canbay3a, E. Canonero95, J. Cantero165, F. Capocasa27, P. Cappelli27, M. Capua43b,43a, A. Carbone70a,70b, R. Cardarelli75a, J. C. J. Cardenas8, M. P. Cardiff27, G. Carducci43b,43a, T. Carli37, G. Carlino71a, J. I. Carlotto13, B. T. Carlson130,h, E. M. Carlson167, L. Carminati70a,70b, A. Carnelli4, M. Carnesale37, S. Caron115, E. Carquin138g, I. B. Carr105, S. Carrà72a,72b, G. Carratta24b,24a, C. Carrion Martinez165, A. M. Carroll124, N. Cartalade40, M. P. Casado13,i, P. Casolaro71a,71b, M. Caspar47, F. Cassinese90, W. R. Castiglioni39, F. L. Castillo4, V. Castillo Gimenez165, N. F. Castro131a,131e, A. Catinaccio37, J. R. Catmore126, T. Cavaliere4, V. Cavaliere30, E. Celebi80, S. Cella30, V. Cepaitis55, K. Cerny123, A. S. Cerqueira81a, A. Cerri73a,j, L. Cerrito75a,75b, F. Cerutti18a, B. Cervato70a,70b, A. Cervelli24b, G. Cesarini52, S. A. Cetin80, V. C. Chabalala34j, P. M. Chabrillat128, R. Chakkappai65, S. Chakraborty169, A. Chambers60, J. Chan18a, J. D. Chapman33, E. Chapon136, D. G. Charlton21, C. Chauhan132, Y. Che112a, S. Chekanov6, G. A. Chelkov38,k, H. Chen30, J. Chen141a, J. Chen145, M. Chen59, S. Chen87, S. J. Chen112a, X. Chen141a, X. Chen15,l, Z. Chen61, C. L. Cheng146, H. C. Cheng63a, S. Cheong146, A. Cheplakov38, E. Cherepanova116, E. Cheu7, K. Cheung64, L. Chevalier136, G. Chiarelli73a, G. Chiodini69a, A. S. Chisholm21, J. L. Chisholm166, A. Chitan28b, M. Chitishvili165, M. V. Chizhov38,m, K. Chmiel76a,76b, K. Choi11, Y. Chou140, E. Y. S. Chow115, G. Christou51, K. L. Chu171, M. C. Chu63a, Z. Chubinidze52, J. Chudoba132, J. J. Chwastowski86, D. Cieri110, K. M. Ciesla85a, V. Cindro93, A. Ciocio18a, F. Cirotto71a,71b, Z. H. Citron171, M. Citterio70a, D. A. Ciubotaru28b, A. Clark55, P. J. Clark51, N. Clarke Hall96, C. Clarry158, S. E. Clawson47, C. Clement46a,46b, L. Clissa24b,24a, Y. Coadou102, M. Cobal68a,68c, A. Coccaro56b, M. G. Cochran Branson140, R. F. Coelho Barrue131a, R. Coelho Lopes De Sa103, S. Coelli70a, M. M. Cohen129, L. S. Colangeli158, B. Cole41, P. Collado Soto99, J. Collot59, M. R. Coluccia69a, I. Combes65, P. Conde Muiño131a,131g, L. H. J. Condren162, M. P. Connell34c, S. H. Connell34c, E. I. Conroy127, M. Contreras Cossio11, F. Conventi71a,n, A. M. Cooper-Sarkar127, L. Corazzina74a,74b, F. A. Corchia24b,24a, A. Cordeiro Oudot Choi140, L. D. Corpe40, M. Corradi74a,74b, F. Corriveau104,o, A. Cortes-Gonzalez156, M. J. Costa165, F. Costanza4, D. Costanzo142, J. Couthures4, G. Cowan95, K. Cranmer172, L. Cremer48, D. Cremonini24b,24a, S. Crépé-Renaudin59, F. Crescioli128, T. Cresta72a,72b, M. Cristinziani144, M. Cristoforetti77a,77b, T. M. Critchley55, E. Critelli96, A. Cueto99, H. Cui96, Z. Cui7, B. M. Cunnett149, W. R. Cunningham58, E. Cuppini110, F. Curcio165, J. R. Curran51, M. J. Da Cunha Sargedas De Sousa56b,56a, J. V. Da Fonseca Pinto81b, C. Da Via101, W. Dabrowski85a, T. Dado37, S. Dahbi151, T. Dai106, D. Dal Santo20, C. Dallapiccola103, M. Dam42, G. D’amen30, V. D’Amico109, J. R. Dandoy35, M. D’Andrea56b,56a, D. Dannheim37, G. D’anniballe73a,73b, M. Danninger145, V. Dao148, G. Darbo56b, F. Dattola47, S. D’Auria70a,70b, A. D’Avanzo71a,71b, T. Davidek134, J. Davidson169, I. Dawson94, K. De8, C. De Almeida Rossi158, N. De Biase47, S. De Castro24b,24a, N. De Groot115, P. de Jong116, H. De la Torre117, A. De Maria112a, S. De Miranda Rimes81d, A. De Salvo74a, U. De Sanctis75a,75b, F. De Santis69a,69b, A. De Santo149, J. B. De Vivie De Regie59, K. G. De Vries116, J. Debevc93, D. V. Dedovich38, J. Degens92, A. M. Deiana44, J. Del Peso99, L. Delagrange27, F. Deliot136, C. M. Delitzsch48, M. Della Pietra71a,71b, D. Della Volpe55, A. Dell’Acqua37, L. Dell’Asta70a,70b, M. Delmastro4, C. C. Delogu56b,56a, P. A. Delsart59, S. Demers174, M. Demichev38, H. Denizli22a,p, M. G. Depala92, L. D’Eramo40, D. Derendarz86, L. Derin56b,56a, F. Derue128, P. Dervan92,a, A. M. Desai1, K. Desch25, F. A. Di Bello73a,73b, A. Di Ciaccio75a,75b, L. Di Ciaccio4, D. Di Croce37, C. Di Donato71a,71b, A. Di Girolamo37, G. Di Gregorio65, A. Di Luca77a,77b, B. Di Micco76a,76b, R. Di Nardo76a,76b, K. F. Di Petrillo39, M. Diamantopoulou35, F. A. Dias116, M. A. Diaz138a,138b, A. R. Didenko38, M. Didenko165, S. D. Diefenbacher18a, E. B. Diehl106, S. Díez Cornell47, C. Diez Pardos144, C. Dimitriadi147, A. Dimitrievska21, A. Dimri148, Y. Ding61, J. Dingfelder25, T. Dingley127, I-M. Dinu28b, S. J. Dittmeier62b, F. Dittus37, M. Divisek134, B. Dixit92, F. Djama102, T. Djobava152b, C. Doglioni101,98, A. Dohnalova29a, Z. Dolezal134, K. Domijan85a, K. M. Dona39, M. Donadelli81d, B. Dong107, J. Donini40, A. D’Onofrio71a,71b, M. D’Onofrio92, J. Dopke135, A. Doria71a, N. Dos Santos Fernandes131a, I. A. Dos Santos Luz81e, P. Dougan44, M. T. Dova90, A. T. Doyle58, M. P. Drescher54, E. Dreyer171, I. Drivas-koulouris10, M. Drnevich118, D. Du61, T. Du39, T. A. du Pree116, Z. Duan112a, M. Dubau4, F. Dubinin38, M. Dubovsky29a, E. Duchovni171, G. Duckeck109, P. K. Duckett96, O. A. Ducu28b, D. Duda51, A. Dudarev37, M. M. Dudek86, E. R. Duden27, M. D’uffizi101, L. Duflot65, M. Dührssen37, I. Duminica28g, A. E. Dumitriu28b, M. Dunford62a, T. Duong4, A. Duperrin102, A. F. Duque Bran40, H. Duran Yildiz3a, A. Durglishvili152b, G. I. Dyckes18a, M. Dyndal85a, B. S. Dziedzic37, G. H. Eberwein127, B. Eckerova29a, J. C. Egan96, S. Eggebrecht54, E. Egidio Purcino De Souza81e, G. Eigen17, K. Einsweiler18a, T. Ekelof163, P. A. Ekman98, S. El Farkh36b, Y. El Ghazali61, H. El Jarrari104, A. El Moussaouy36a, I. Elbaz154, D. Elitez37, M. Ellert163, F. Ellinghaus173, T. A. Elliot95, J. Elmsheuser30, M. Elsawy83b, M. Elsing37, D. Emeliyanov135, Y. Enari82, S. Epari108, D. Ernani Martins Neto86, F. Ernst37, M. Escalier65, C. Escobar165, R. Estevam De Paula81c, E. Etzion154, G. Evans131a,131b, H. Evans67, L. S. Evans47, S. Ezzarqtouni36a, F. Fabbri24b,24a, L. Fabbri24b,24a, G. Facini96, V. Fadeyev137, D. Fakoudis100, S. Falciano74a, L. F. Falda Ulhoa Coelho27, F. Fallavollita110, G. Falsetti43b,43a, J. Faltova134, C. Fan164, K. Y. Fan63b, Y. Fan14, Y. Fang14,112c, M. Fanti70a,70b, M. Faraj68a,68c, Z. Farazpay97, A. Farbin8, A. Farilla76a, K. Farman151, J. N. Farr174, M. S. Farrington60, S. M. Farrington135,51, F. Fassi36e, D. Fassouliotis9, L. Fayard65, G. Fazzino62b, P. Federic134, P. Federicova132, M. Feickert172, L. Feligioni102, D. E. Fellers18a, C. Feng113b, Y. Feng14, Z. Feng65, B. Fernandez Barbadillo91, P. Fernandez Martinez66, C. Fernandez Ruiz33, J. Ferrando91, A. Ferrari163, P. Ferrari116,115, R. Ferrari72a, D. Ferrere55, C. Ferretti106, M. P. Fewell1, D. Fiacco74a,74b, F. Fiedler100, P. Fiedler133, S. Filimonov38, M. S. Filip28b,q, A. Filipčič93, E. K. Filmer159a, F. Filthaut115, M. C. N. Fiolhais131a,131c,r, L. Fiorini165, W. C. Fisher107, T. Fitschen101, I. Fleck144, P. Fleischmann106, T. Flick173, M. Flores34d,s, L. R. Flores Castillo63a, M. Foll126, F. M. Follega77a,77b, N. Fomin33, J. H. Foo158, A. Formica136, M. Fornasiero149, A. C. Forti101, N. Forti24b,24a, E. Fortin102, A. W. Fortman18a, L. Foster18a, L. Fountas9, H. Fox91, P. Francavilla73a,73b, S. Francescato60, S. Franchellucci20, M. Franchini24b,24a, S. Franchino62a, D. Francis37, L. Franco47, L. Franconi47, M. Franklin60, G. Frattari37, Y. Y. Frid154, N. Fritzsche37, A. Froch55, D. Froidevaux37, J. A. Frost135, Y. Fu107, S. Fuenzalida Garrido138g, Y. C. Fujikake137, M. Fujimoto148, K. Y. Fung63a, E. Furtado De Simas Filho81e, M. Furukawa156, M. Fuste Costa47, P. Fuste Martin13, J. Fuster165, A. Gaa54, A. Gabrielli24b,24a, A. Gabrielli158, G. Gagliardi56b,56a, L. G. Gagnon18a, S. Galantzan154, J. Gallagher1, E. J. Gallas127, A. L. Gallen163, B. J. Gallop135, K. K. Gan120, Y. Gao51, Z. Gao112a, A. Garabaglu140, F. M. Garay Walls138a,138b, C. García165, A. Garcia Alonso116, A. G. Garcia Caffaro174, J. E. García Navarro165, M. A. Garcia Ruiz23b, M. Garcia-Sciveres18a, G. L. Gardner129, R. W. Gardner39, N. Garelli161, R. B. Garg146, J. M. Gargan33, C. A. Garner158, C. M. Garvey34a, V. K. Gassmann161, G. Gaudio72a, A. J. Gavin94, J. Gavranovic93, I. L. Gavrilenko131a, C. Gay166, G. Gaycken124, A. Gekow120, C. Gemme56b, M. H. Genest59, A. D. Gentry114, S. George95, T. Geralis45, A. A. Gerwin121, P. Gessinger-Befurt37, M. Ghani169, K. Ghorbanian94, A. Ghosal144, A. Ghosh162, A. Ghosh7, B. Giacobbe24b, S. Giagu74a,74b, A. Giannini61, S. M. Gibson95, D. T. Gil85b, B. J. Gilbert41, D. Gillberg35, G. Gilles116, D. M. Gingrich2,t, M. P. Giordani68a,68c, P. F. Giraud136, G. Giugliarelli68a,68c, D. Giugni70a, F. Giuli75a,75b,u, I. Gkialas9,v, B. C. Gladwyn127, C. Glasman99, M. Glazewska20, R. M. Gleason162, G. Glemža47, I. Gnesi24b,24a,w, Y. Go30, M. Goblirsch-Kolb37, B. Gocke48, D. Godin108, B. Gokturk22a, S. Goldfarb105, T. Golling55, M. G. D. Gololo34c, A. Golub140, J. P. Gombas107, A. Gomes131a,131b, G. Gomes Da Silva144, A. J. Gomez Delegido37, R. Gonçalo131a, A. Gongadze152c, F. Gonnella21, J. L. Gonski146, R. Y. González Andana51, S. González de la Hoz165, M. V. Gonzalez Rodrigues47, R. Gonzalez Suarez163, S. Gonzalez-Sevilla55, L. Goossens37, B. Gorini37, E. Gorini69a,69b, A. Gorišek93, T. C. Gosart129, A. T. Goshaw50, M. I. Gostkin38, S. Goswami122, C. A. Gottardo37, S. A. Gotz109, M. Gouighri36b, A. G. Goussiou140, N. Govender34c, R. P. Grabarczyk127, I. Grabowska-Bold85a, K. Graham35, E. Gramstad126, S. Grancagnolo69a,69b, C. M. Grant1, P. M. Gravila28f, F. G. Gravili69a,69b, H. M. Gray18a, M. Greco110, M. J. Green1, C. Grefe25, A. S. Grefsrud17, I. M. Gregor47, K. T. Greif162, P. Grenier146, S. G. Grewe110, K. Grimm32, S. Grinstein13,x, E. Gross171, J. Grosse-Knetter54, L. H. Grossman18b, L. Guan106, G. Guerrieri37, R. Guevara126, R. Gugel100, J. A. M. Guhit106, A. Guida19, E. Guilloton169, S. Guindon37, F. Guo14,112c, J. Guo141a, L. Guo47, L. Guo112b,y, Y. Guo106, Y. Guo41, A. Gupta48, R. Gupta130, S. Gupta27, S. Gurbuz25, S. S. Gurdasani47, G. Gustavino74a,74b, P. Gutierrez121, L. F. Gutierrez Zagazeta129, M. Gutsche49, C. Gutschow96, W. Guérin89, C. Gwenlan127, C. B. Gwilliam92, E. S. Haaland126, A. Haas118, M. Habedank58, C. Haber18a, R. J. Haberle171, H. K. Hadavand8, A. Haddad40, A. Hadef49, A. I. Hagan91, J. J. Hahn144, M. Haleem168, J. Haley122, G. D. Hallewell102, J. A. Hallford47, K. Hamano167, H. Hamdaoui163, M. Hamer25, S. E. D. Hammoud65, E. J. Hampshire95, L. Han112a, L. Han61, S. Han14, K. Hanagaki82, M. Hance137, D. A. Hangal41, H. Hanif145, M. D. Hank129, J. B. Hansen42, P. H. Hansen42, T. Harenberg173, S. Harkusha175, M. L. Harris103, Y. T. Harris25, J. Harrison13, P. F. Harrison169, M. L. E. Hart96, N. M. Hartman110, N. M. Hartmann109, R. Z. Hasan95,135, Y. Hasegawa143, D. Hashimoto111, F. Haslbeck37, S. Hassan126, R. Hauser107, M. Haviernik134, C. M. Hawkes21, R. J. Hawkings37, Y. Hayashi156, D. Hayden107, R. L. Hayes116, C. P. Hays127, J. M. Hays94, H. S. Hayward92, M. He14,112c, Y. He47, Y. He96, N. B. Heatley94, V. Hedberg98, J. Heilman35, S. Heim47, T. Heim18a, J. J. Heinrich124, L. Heinrich110, J. Hejbal132, M. Helbig49, A. Held172, S. Hellesund17, C. M. Helling166, F. N. E. Henry58, H. Herde98, Y. Hernández Jiménez148, G. Herten53, R. Hertenberger109, L. Hervas37, M. E. Hesping100, N. P. Hessey159a, J. Hessler110, R. Hicks129, M. Hidaoui36b, N. Hidic134, E. Hill158, T. S. Hillersoy17, S. J. Hillier21, J. R. Hinds107, F. Hinterkeuser25, M. Hirose125, S. Hirose160, D. Hirschbuehl173, B. Hiti93, J. Hobbs148, R. Hobincu28e, N. Hod171, A. M. Hodges164, M. C. Hodgkinson142, B. H. Hodkinson127, A. Hoecker37, D. D. Hofer106, J. Hofer165, J. Hofner100, M. Holzbock37, L. B. A. H. Hommels33, V. Homsak127, J. J. Hong67, T. M. Hong130, B. H. Hooberman164, W. H. Hopkins6, M. C. Hoppesch164, Y. Horii111, M. E. Horstmann110, M. M. Horzela54, S. Hou151, M. R. Housenga164, J. Howarth58, J. Hoya6, M. Hrabovsky123, T. Hryn’ova4, P. J. Hsu64, S.-C. Hsu140, T. Hsu65, M. Hu18a, P. Hu63b, Q. Hu61, S. Huang33, X. Huang14,112c, Y. Huang134, Y. Huang112b, Y. Huang14, Z. Huang65, Z. Hubacek133, F. Huegging25, T. B. Huffman127, M. Hufnagel Maranha De Faria81a, C. A. Hugli47, M. Huhtinen37, S. K. Huiberts17, R. Hulsken104, C. E. Hultquist18a, D. L. Humphreys103, N. Huseynov12, J. Huston107, B. Huth37, J. Huth60, L. Huth47, R. Hyneman7, G. Iacobucci55, G. Iakovidis30, L. Iconomidou-Fayard65, J. P. Iddon37, P. Iengo71a,71b, Y. Iiyama156, T. Iizawa156, Y. Ikegami82, D. Iliadis155, N. Ilic158, H. Imam36a, G. Inacio Goncalves81d, S. A. Infante Cabanas138c, T. Ingebretsen Carlson46a,46b, J. M. Inglis94, G. Introzzi72a,72b, M. Iodice76a, V. Ippolito74a,74b, R. K. Irwin92, M. Ishino156, W. Islam172, C. Issever19, S. Istin22a,z, K. Itabashi125, H. Ito170, R. Iuppa77a,77b, A. Ivina171, F. Ivone37, S. Izumiyama111, V. Izzo71a, P. Jacka133, P. Jackson1, P. R. Jacobson50, P. Jain47, K. Jakobs53, J. Jamieson58, W. Jang156, S. Jankovych116, B. K. Jashal135, M. Javurkova103, P. Jawahar101, L. Jeanty124, J. Jejelava152a,aa, P. Jenni53,bb, L. Jerala93, C. E. Jessiman35, H. Jia166, J. Jia148, X. Jia110,112c, C. Jiang51, Q. Jiang63b, S. Jiggins47, M. Jimenez Ortega165, J. Jimenez Pena13, S. Jin112a, A. Jinaru28b, O. Jinnouchi139, P. Johansson142, K. A. Johns7, J. W. Johnson137, F. A. Jolly47, D. M. Jones149, E. Jones47, K. S. Jones8, P. Jones33, R. W. L. Jones91, T. J. Jones92, H. L. Joos37, R. Joshi120, J. Jovicevic16, X. Ju18a, J. J. Junggeburth37, T. Junkermann62a, A. Juste Rozas13,x, M. K. Juzek86, S. Kabana138f, A. Kaczmarska86, S. A. Kadir146, M. Kado110, H. Kagan120, M. Kagan146, A. Kahn129, C. Kahra100, T. Kaji156, E. Kajomovitz153, N. Kakati171, N. Kakoty13, S. Kandel8, E. Kanellaki45, N. Kanellos10, D. Kar34j,a, E. Karentzos25, K. Karki8, O. Karkout116, S. N. Karpov38, Z. M. Karpova38, V. Kartvelishvili91,152b, E. Kasimi155, J. Katzy47, S. Kaur35, R. Kavak164, K. Kawade143, M. P. Kawale121, C. Kawamoto87, E. F. Kay37, S. Kazakos107, K. Kazakova102, J. M. Keaveney34a, R. Keeler167, G. V. Kehris60, J. S. Keller35, J. M. Kelly167, J. J. Kempster149, O. Kepka132, J. Kerr159b, B. P. Kerridge135, B. P. Kerševan93, L. Keszeghova29a, R. A. Khan130, A. Khanov122, M. Kholodenko131a, T. J. Khoo19, G. Khoriauli168, Y. Khoulaki36a, Y. A. R. Khwaira128, D. Kim6, D. W. Kim18b, Y. K. Kim39, N. Kimura96, M. K. Kingston54, F. Kirfel25, J. Kirk135, A. E. Kiryunin110, S. Kita160, O. Kivernyk25, M. Klassen161, C. Klein35, L. Klein168, M. H. Klein44, S. B. Klein55, U. Klein92, A. Klimentov30, P. Kluit116, S. Kluth110, E. Kneringer78, T. M. Knight158, A. Knue48, M. Kobel49, D. Kobylianskii171, S. F. Koch37, M. Kocian146, P. Kodyš134, D. M. Koeck124, T. Koffas35, K. Kojima82, O. Kolay49, I. Koletsou4, T. Komarek86, S. Kondo156, K. Köneke54, A. X. Y. Kong1, T. Kono119, N. Konstantinidis96, P. Kontaxakis55, B. Konya98, R. Kopeliansky41, S. Koperny85a, R. Koppenhofer53, I. Kopsalis10, K. Korcyl86, K. Kordas155,cc, A. Korn96, S. Korn54, I. Korolkov13, B. Kortman116, O. Kortner110, S. Kortner110, W. H. Kostecka117, M. Kostov29a, V. V. Kostyukhin144, A. Kotsokechagia37, A. Kotwal50, A. Koulouris37, A. Kourkoumeli-Charalampidi72a,72b, E. Koutsioumpas10, O. Kovanda124, R. Kowalewski167, W. Kozanecki124, G. Kramberger93, P. Kramer25, A. Krasznahorkay103, A. C. Kraus117, J. W. Kraus173, J. A. Kremer47, N. B. Krengel144, T. Kresse158, L. Kretschmann173, J. Kretzschmar92, P. Krieger158, K. Krizka21, K. Kroeninger48, H. Kroha110, J. Kroll132, J. Kroll129, K. S. Krowpman107, U. Kruchonak38, H. Krüger25, N. Krumnack79, J. Krupa146, M. C. Kruse50, O. Kuchinskaia38, S. Kuday3a, S. Kuehn37, R. Kuesters53, T. Kuhl47, V. Kukhtin38, Y. Kulchitsky38, S. Kuleshov138d,138b, J. Kull1, E. V. Kumar109, M. Kumar34j, N. Kumari47, P. Kumari159b, A. Kupco132, O. Kuprash53, H. Kurashige84, L. L. Kurchaninov159a, O. Kurdysh4, M. Kuze139, A. K. Kvam103, J. Kvita123, N. G. Kyriacou140, M. Laassiri30, C. Lacasta165, H. Lacker19, D. Lacour128, E. Ladygin38, A. Lafarge40, B. Laforge128, T. Lagouri174, F. Z. Lahbabi36a, S. Lai54, W. S. Lai96, I. K. Lakomiec54, J. E. Lambert167, S. Lammers67, W. Lampl7, C. Lampoudis155, G. Lamprinoudis168, A. N. Lancaster117, U. Landgraf53, M. P. J. Landon94, V. S. Lang53, A. J. Lankford162, F. Lanni37, C. S. Lantz164, K. Lantzsch25, A. Lanza72a, M. Lanzac Berrocal165, T. Lari70a, D. Larsen17, L. Larson11, F. Lasagni Manghi24b, M. Lassnig37, H. C. Lau167, S. D. Lawlor142, R. Lazaridou162, M. Lazzaroni70a,70b, E. T. T. Le162, H. D. M. Le107, E. M. Le Boulicaut174, D. O. Le Guennec136, L. T. Le Pottier18a, B. Leban24b,24a, F. Ledroit-Guillon59, T. F. Lee159b, L. L. Leeuw34h, M. Lefebvre167, C. Leggett18a, L. M. Lehmann116, G. Lehmann Miotto37, M. Leigh55, W. A. Leight103, W. Leinonen115, A. Leisos155,dd, M. A. L. Leite81c, C. E. Leitgeb19, R. Leitner134, K. J. C. Leney44, T. Lenz25, S. Leone73a, C. Leonidopoulos51, A. Leopold147, J. LePage-Bourbonnais35, R. Les107, C. G. Lester33, J. Levêque4, L. J. Levinson171, G. Levrini24b,24a, M. P. Lewicki86, C. Lewis140, D. J. Lewis4, L. Lewitt142, A. Li30, B. Li113b, C. Li106, C-Q. Li110, H. Li113b, H. Li101, H. Li15, H. Li61, H. Li113b, J. Li141a, L. Li141a, R. Li174, S. Li141b,141a, T. Li5, Y. Li14, Z. Li14,112c, Z. Li61, S. Liang14,112c, Z. Liang14, M. Liberatore136, B. Liberti75a, G. B. Libotte81d, K. Lie63c, J. Lieber Marin81e, H. Lien67, H. Lin106, S. F. Lin148, L. Linden109, R. E. Lindley7, J. H. Lindon37, J. Ling60, E. Lipeles129, A. Lipniacka17, A. Lister166, J. D. Little67, B. Liu113a, B. X. Liu112b, D. Liu153, D. Liu137, E. H. L. Liu21, H. Liu112b, J. K. K. Liu118, K. Liu141b, K. Liu141b, M. Liu61, M. Y. Liu61, P. Liu113b, Q. Liu146, S. Liu148, X. Liu113b, Y. Liu112b,112c, Y. Liu164, Y. L. Liu113b, Y. W. Liu61, Z. Liu65,ee, S. L. Lloyd94, E. M. Lobodzinska47, P. Loch7, E. Lodhi158, K. Lohwasser142, E. Loiacono122, J. D. Lomas21, I. Longarini162, R. Longo24b,24a,w, A. Lopez Solis13, N. A. Lopez-canelas7, N. Lorenzo Martinez4, A. M. Lory109, M. Losada83b, G. Löschcke Centeno4, X. Lou14,112c, P. A. Love91, M. Lu65, S. Lu129, Y. J. Lu151, H. J. Lubatti140, C. Luci74a,74b, F. L. Lucio Alves112a, J. A. Lue124, F. Luehring67, B. S. Lunday129, O. Lundberg147, J. Lunde37, N. A. Luongo6, M. S. Lutz158, A. B. Lux26, D. Lynn30, R. Lysak132, V. Lysenko133, E. Lytken98, V. Lyubushkin38, T. Lyubushkina38, M. M. Lyukova148, H. Ma30, K. Ma61, L. L. Ma113b, W. Ma61, Y. Ma113b, J. C. MacDonald100, P. C. Machado De Abreu Farias81e, D. Macina37, R. Madar40, T. Madula96, J. Maeda84, T. Maeno30, P. T. Mafa34f, H. Maguire142, M. Maheshwari33, V. Maiboroda65, G. Maineri70a,70b, A. Maio131a,131b,131d, K. Maj85a, O. Majersky47, S. Majewski124, A. Makita156, N. Makovec65, V. Maksimovic16, B. Malaescu128, J. Malamant126, Pa. Malecki86, F. Malek59,ff, M. Mali93, D. Malito95, A. Maloizel5, A. Malvezzi Lopes81d, S. Malyukov38, J. Mamuzic93, G. Mancini52, M. N. Mancini27, G. Manco72a,72b, S. S. Mandarry149, I. Mandić93, L. Manhaes de Andrade Filho81a, I. M. Maniatis171, J. Manjarres Ramos89, D. C. Mankad171, A. Mann109, T. Manoussos37, M. N. Mantinan39, S. Manzoni37, L. Mao141a, X. Mapekula34c, A. Marantis155, R. R. Marcelo Gregorio1, G. Marchiori5, C. Marcon70a, E. Maricic16, M. Marinescu47, S. Marium47, M. Marjanovic121, A. Markhoos53, M. Markovitch65, M. K. Maroun103, M. C. Marr145, T. L. Marsault136, G. T. Marsden101, Z. Marshall18a, S. Marti-Garcia165, J. Martin96, T. A. Martin135, V. J. Martin51, B. Martin dit Latour17, L. Martinelli74a,74b, V. I. Martinez Outschoorn103, P. Martinez Suarez37, S. Martin-Haugh135, G. Martinovicova134, V. S. Martoiu28b, A. Martone89, A. C. Martyniuk96, A. Marzin37, D. Mascione77a,77b, L. Masetti100, J. Masik101, A. L. Maslennikov38, S. L. Mason41, P. Massarotti71a,71b, P. Mastrandrea73a,73b, A. Mastroberardino43b,43a, R. Mastrofrancesco72a,72b, T. Masubuchi125, T. T. Mathew124, J. Matousek134, D. M. Mattern48, K. Mauer47, J. Maurer28b, T. Maurin58, A. J. Maury65, B. Maček93, C. Mavungu Tsava102, A. E. May101, E. Mayer40, R. Mazini34j, S. M. Mazza137, E. Mazzeo37, J. P. Mc Gowan167, S. P. Mc Kee106, C. C. McCracken166, E. F. McDonald105, L. F. Mcelhinney91, J. A. Mcfayden149, R. P. McGovern129, R. P. Mckenzie34j, D. J. Mclaughlin96, S. J. McMahon135, C. M. Mcpartland92, R. A. McPherson167,o, S. Mehlhase109, A. Mehta92, D. Melini165, B. R. Mellado Garcia14,gg, A. H. Melo54, F. Meloni47, A. M. Mendes Jacques Da Costa101, L. Meng91, S. Menke110, M. Mentink37, E. Meoni43b,43a, G. Mercado117, S. Merianos155, C. Merlassino68a,68c, C. Meroni70a,70b, J. Metcalfe6, A. S. Mete6, E. Meuser100, C. Meyer67, J-P. Meyer136, Y. Miao112a, R. P. Middleton135, M. Mihovilovic65, L. Mijović51, G. Mikenberg171, M. Mikestikova132, M. Mikuž93, H. Mildner100, A. Milic37, D. W. Miller39, E. H. Miller146, A. Milov171, D. A. Milstead46a,46b, T. Min112a, I. A. Minashvili152b, A. I. Mincer118, B. Mindur85a, M. Mineev38, Y. Mino87, L. M. Mir13, M. Miralles Lopez58, M. Mironova18a, M. Missio40, A. Mitra169, V. A. Mitsou165, Y. Mitsumori111, P. S. Miyagawa94, R. Mizuhiki84, T. Mkrtchyan37, M. Mlinarevic96, T. Mlinarevic96, M. Mlynarikova134, L. Mlynarska85a, C. Mo141a, H. Mobius47, S. Mobius20, M. H. Mohamed Farook114, S. Mohapatra41, M. F. Mohd Soberi51, S. Mohiuddin122, G. Mokgatitswane34j, R. Mole21, L. Moleri171, U. Molinatti127, L. G. Mollier20, L. Monaco37,58, B. Mondal132, S. Mondal134, K. Mönig47, E. Monnier102, L. Monsonis Romero165, A. Montella46a,46b, M. Montella120, F. Montereali76a,76b, F. Monticelli90, S. Monzani68a,68c, M. E. E. Moors25, A. Morancho Tarda42, N. Morange65, M. Moreno Llácer165, C. Moreno Martinez55, J. M. Moreno Perez23b, P. Morettini56b, S. Morgenstern62a, M. Morii60, M. Morinaga156, F. Morodei74a,74b, P. Moschovakos37, B. Moser53, M. Mosidze152b, T. Moskalets44, P. Moskvitina115, C. J. Mosomane34b, J. Moss32, T. Motta Quirino81d, A. Moussa36d, Y. Moyal171,hh, H. Moyano Gomez13, E. J. W. Moyse103, T. G. Mroz86, S. Muanza102, M. Mucha25, J. Mueller130, D. Muller144, G. A. Mullier163, A. J. Mullin33, J. J. Mullin50, A. C. Mullins44, A. E. Mulski60, D. P. Mungo158, D. Munoz Perez122, F. J. Munoz Sanchez101, W. J. Murray169,135, E. Musajan61, M. Muškinja93, C. Mwewa47, A. J. Myers8, G. Myers106, M. Myska133, B. P. Nachman146, K. Nagai127, K. Nagano82, R. Nagasaka156, J. L. Nagle30,ii, E. Nagy102, A. M. Nairz37, T. Nakagawa87, Y. Nakahama82, K. Nakamura82, K. Nakkalil5, A. Nandi62b, H. Nanjo125, E. A. Narayanan44, Y. Narukawa156, L. Nasella70a,70b, S. Nasri83c, C. Nass25, G. Navarro23a, A. Nayaz19, S. Nechaeva24b,24a, F. Nechansky132, L. Nedic127, A. Negri72a,72b, M. Negrini24b, C. Nellist116, C. Nelson104, K. Nelson106, S. Nemecek132, M. Nessi37,jj, M. S. Neubauer164, J. Newell92, P. R. Newman21, Y. W. Y. Ng164, B. Ngair83b, H. D. N. Nguyen108, J. D. Nichols121, R. Nicolaidou136, J. Nielsen137, M. Niemeyer54, J. Niermann37, N. Nikiforou37, I. Nikolic-Audit128, P. Nilsson30, G. Ninio154, A. Nisati74a, D. Nishimura156, R. Nisius110, N. Nitika171, E. K. Nkadimeng34b, T. Nobe156, D. Noll146, T. Nommensen150, M. B. Norfolk142, B. J. Norman35, L. C. Nosler18a, M. Noury36a, J. Novak93, T. Novak93, P. Novotny171, R. Novotny133, L. Nozka123, K. Ntekas37, D. Ntounis146, N. M. J. Nunes De Moura Junior81b, J. Ocariz128, I. Ochoa131a, A. Odella Rodriguez13, S. Oerdek47, J. T. Offermann39, A. Ogrodnik86, A. Oh101, C. C. Ohm147, H. Oide82, M. L. Ojeda37, Y. Okumura156, L. F. Oleiro Seabra131a, I. Oleksiyuk55, G. Oliveira Correa13, D. Oliveira Damazio30, J. L. Oliver1, R. Omar67, A. P. O’Neill20, Y. Onoda139, A. Onofre131a,131e,kk, P. U. E. Onyisi11, M. J. Oreglia39, D. Orestano76a,76b, R. Orlandini76a,76b, R. S. Orr158, L. M. Osojnak41, Y. Osumi111, G. Otero y Garzón31, H. Otono88, M. Ouchrif36d, F. Ould-Saada126, T. Ovsiannikova140, M. Owen58, R. E. Owen135, S. A. Oyeniran114, V. E. Ozcan22a, F. Ozturk86, N. Ozturk8, S. Ozturk80, H. A. Pacey127, K. Pachal159a, A. Pacheco Pages13, C. Padilla Aranda13, G. Padovano74a,74b, S. Pagan Griso18a, L. Pagani75a,75b, J. Pampel25, D. K. Panchal11, C. E. Pandini59, J. G. Panduro Vazquez135, H. D. Pandya1, H. Pang136, P. Pani47, G. Panizzo68a,68c, L. Panwar128,ll, L. Paolozzi21, S. Parajuli164, A. Paramonov6, C. Paraskevopoulos52, D. Paredes Hernandez63b, S. R. Paredes Saenz51, A. Pareti72a,72b, K. R. Park41, T. H. Park110, F. Parodi56b,56a, J. A. Parsons41, U. Parzefall53, B. A. Paschen18a, B. Pascual Dias40, L. Pascual Dominguez99, E. Pasqualucci74a, S. Passaggio56b, F. Pastore95, P. Patel86, U. M. Patel50, J. R. Pater101, T. Pauly37, A. Paunovic16, F. Pauwels134, C. I. Pazos161, M. Pedersen126, R. Pedro131a, O. Penc132, C. C. Penelaud128, S. Peng15, G. D. Penn174, B. S. Peralva81d, A. P. Pereira Peixoto140, L. Pereira Sanchez146, D. V. Perepelitsa30,ii, G. Perera103, E. Perez Codina37, M. Perganti10, H. Pernegger37, S. Perrella74a,74b, K. Peters47, R. F. Y. Peters101, B. A. Petersen37, T. C. Petersen42, E. Petit102, V. Petousis133, A. R. Petri70a,70b, T. Petru134, M. Pettee18a, A. Petukhov80, K. Petukhova37, R. Pezoa138g, L. Pezzotti24b,24a, G. Pezzullo174, L. Pfaffenbichler37, A. J. Pfleger78, T. M. Pham172, T. Pham105, P. W. Phillips135, G. Piacquadio148, E. Pianori18a, F. Piazza124, R. Piegaia31, D. Pietreanu28b, A. D. Pilkington101, T. Pilusa34j, M. Pinamonti68a,68c, J. L. Pinfold2, G. Pinheiro Matos41, B. C. Pinheiro Pereira131a, J. Pinol Bel13, A. E. Pinto Pinoargote128, L. Pintucci68a,68c, K. M. Piper149, A. Pirttikoski55, D. A. Pizzi35, L. Pizzimento63b, A. Plebani33, M.-A. Pleier30, V. Pleskot134, E. Plotnikova38, G. Poddar94, R. Poettgen98, L. Poggioli128, S. Polacek134, G. Polesello72a, A. Poley145, A. Polini24b, C. S. Pollard169, Z. B. Pollock120, E. Pompa Pacchi121, N. I. Pond96, D. Ponomarenko67, L. Pontecorvo37, S. Popa28a, G. A. Popeneciu28d, A. Poreba37, D. M. Portillo Quintero159a, S. Pospisil133, M. A. Postill142, P. Postolache28c, K. Potamianos169, P. A. Potepa85a, I. N. Potrap38, C. J. Potter33, H. Potti150, J. Poveda165, M. E. Pozo Astigarraga37, R. Pozzi37, A. Prades Ibanez75a,75b, S. R. Pradhan142, J. Pretel167, D. Price101, M. Primavera69a, L. Primomo68a,68c, M. A. Principe Martin99, R. Privara123, T. Procter85b, M. L. Proffitt140, N. Proklova129, K. Prokofiev63c, G. Proto110, J. Proudfoot6, M. Przybycien85a, W. W. Przygoda85b, A. Psallidas45, D. Pudzha52, P. Puhl57, H. I. Purnell1, D. Pyatiizbyantseva115, J. Qian106, R. Qian107, D. Qichen127, Y. Qin13, T. Qiu51, A. Quadt54, M. Queitsch-Maitland101, G. Quetant55, R. P. Quinn166, D. Rafanoharana110, J. L. Rainbolt39, S. Rajagopalan30, E. Ramakoti38, L. Rambelli56b,56a, I. A. Ramirez-Berend35, K. Ran106,112c, S. D. Randles92, D. S. Rankin129, N. P. Rapheeha34j, H. Rasheed28b, A. Rastogi18a, S. Rave100, S. Ravera56b,56a, B. Ravina37, I. Ravinovich171, M. Raymond37, A. L. Read126, N. P. Readioff142, D. M. Rebuzzi72a,72b, A. S. Reed58, K. Reeves27, D. Reikher37, A. Rej48, C. Rembser37, H. Ren61, M. Renda28b, F. Renner47, A. G. Rennie58, M. Repik55, A. L. Rescia56b,56a, S. Resconi70a, M. Ressegotti56b, S. Rettie116, W. F. Rettie35, M. M. Revering33, O. L. Rezanova38, P. Reznicek134, H. Riani36d, N. Ribaric50, B. Ricci68a,68c, E. Ricci77a,77b, R. Richter110, E. Richter-Was85b, M. Ridel128, S. Ridouani36d, P. Riedler37, E. M. Riefel46a,46b, J. O. Rieger116, M. Rimoldi34c, L. Rinaldi24b,24a, P. Rincke163,54, G. Ripellino163, I. Riu13, J. C. Rivera Vergara167, F. Rizatdinova122, E. Rizvi94, B. R. Roberts39, S. S. Roberts137, D. Robinson33, A. Robson58, A. Rocchi75a,75b, C. Roda73a,73b, F. A. Rodriguez117, S. Rodriguez Bosca37, Y. Rodriguez Garcia23a, A. M. Rodríguez Vera117, S. Roe37, J. T. Roemer37, O. Røhne126, R. A. Rojas37, Z. Rokavec93, C. P. A. Roland128, A. Romaniouk78, E. Romano72a,72b, M. Romano24b, N. Rompotis92, L. Roos128, S. Rosati74a, L. Roscher47, B. J. Rosser39, E. Rossi127, E. Rossi71a,71b, L. P. Rossi60, L. Rossini53, R. Rosten120, M. Rotaru28b, R. Roth37, D. Rousseau65, D. Rousso47, S. Roy-Garand55, A. Rozanov102, Z. M. A. Rozario58, Y. Rozen153, A. Rubio Jimenez165, V. H. Ruelas Rivera19, T. A. Ruggeri1, A. Ruggiero127, A. Ruiz-Martinez165, A. Rummler37, G. B. Rupnik Boero37, N. A. Rusakovich38, S. Ruscelli48, H. L. Russell167, G. Russo137, J. P. Rutherfoord7, S. Rutherford Colmenares118, M. Rybar134, P. Rybczynski85a, A. Ryzhov44, F. Safai Tehrani74a, S. Saha1, B. Sahoo171, B. T. Saifuddin121, M. Saimpert136, I. Sainz Saenz Diez62a, G. T. Saito81c, M. Saito156, T. Saito156, A. Sala70a,70b, O. T. Salin65, A. Salnikov146, J. Salt165, A. Salvador Salas154, F. Salvatore149, A. Salzburger37, D. Sammel53, E. Sampson91, D. Sampsonidis155,cc, D. Sampsonidou124, M. A. A. Samy58, J. Sánchez165, V. Sanchez Sebastian165, H. Sandaker126, C. O. Sander47, J. A. Sandesara172, M. Sandhoff173, C. Sandoval23b, L. Sanfilippo62a, D. P. C. Sankey135, T. Sano87, A. Sansar22c, A. Sansoni52, M. Santana Queiroz18b, L. Santi37, C. Santoni40, H. Santos131a,131b, L. Santos Pereira Trigo47, E. Sanzani24b,24a, K. A. Saoucha83d, J. G. Saraiva131a,131d, J. Sardain7, S. Sarkar50, O. Sasaki82, K. Sato160, C. Sauer37, E. Sauvan4, P. Savard158,t, R. Sawada156, C. Sawyer135, L. Sawyer97, A. M. Sayed27, C. Sbarra24b, A. Sbrizzi24b,24a, R. Scaglioni72a,72b, T. Scanlon96, J. Schaarschmidt140, U. Schäfer100, A. C. Schaffer65,44, D. Schaile109, R. D. Schamberger148, C. Scharf19, M. M. Schefer20, D. Scheirich134, M. Schernau138f, C. Scheulen55, C. Schiavi56b,56a, M. Schioppa43b,43a, S. Schlenker37, T. Schlomer54, J. Schmeing173, C. R. Schmidt49, E. Schmidt110, M. A. Schmidt173, K. Schmieden25, C. Schmitt100, N. Schmitt100, S. Schmitt47, N. A. Schneider109, L. Schoeffel136, A. Schoening62b, P. G. Scholer35, E. Schopf144, M. Schott25, S. Schramm55, T. Schroer55, H-C. Schultz-Coulon62a, M. Schumacher53, B. A. Schumm137, Ph. Schune136, H. R. Schwartz7, A. Schwartzman146, T. A. Schwarz106, Ph. Schwemling136, R. Schwienhorst107, F. G. Sciacca20, A. Sciandra30, G. Sciolla27, S. A. Scoville130, F. Scuri73a, C. D. Sebastiani37, K. Sedlaczek117, A. Sehrawat138b, S. C. Seidel114, B. D. Seidlitz41, C. Seitz47, J. M. Seixas81b, G. Sekhniaidze71a, L. Selem128, N. Semprini-Cesari24b,24a, A. Semushin175, V. Senthilkumar116, L. Serin65, M. Sessa71a,71b, H. Severini121, F. Sforza56b,56a, A. Sfyrla55, Q. Sha14, H. Shaddix117, A. H. Shah33, R. Shaheen147, J. D. Shahinian129, M. Shamim37, L. Y. Shan14, M. Shapiro18a, A. Sharma37, A. S. Sharma166, P. Sharma30, K. Shaw149, S. M. Shaw101, D. Shemyakin171, Q. Shen14, D. J. Sheppard145, P. Sherwood96, L. Shi112b, X. Shi14, S. Shimizu82, S. Shirabe88, M. Shiyakova38,mm, M. J. Shochet39, D. R. Shope126, B. Shrestha121, S. Shrestha120,nn, I. Shreyber38, M. J. Shroff104, P. Sicho132, A. M. Sickles164, E. Sideras Haddad34j, A. C. Sidley116, A. Sidoti24b, F. Siegert49, Dj. Sijacki16, F. Sili61, J. M. Silva51, I. Silva Ferreira81b, M. V. Silva Oliveira30, S. B. Silverstein46a, S. Simion65, R. Simoniello37, E. L. Simpson101, H. Simpson149, L. R. Simpson6, S. Simsek80, S. Sindhu54, S. N. Singh27, S. Singh30, S. Sinha47, S. Sinha101, M. Sioli24b,24a, K. Sioulas9, I. Siral37, E. Sitnikova47, J. Sjölin46a,46b, A. Skaf54, E. Skorda21, P. Skubic121, M. Slawinska86, I. Slazyk17, I. Sliusar126, V. Smakhtin171, B. H. Smart135, S. Yu. Smirnov138b, Y. Smirnov34c, O. Smirnova98, J. L. Smith101, M. B. Smith35, R. Smith146, H. Smitmanns100, M. Smizanska91, K. Smolek133, P. Smolyanskiy133, A. A. Snesarev38, H. L. Snoek116, R. M. Snyder50, S. Snyder30, R. Sobie167,o, A. Soffer154, C. A. Solans Sanchez37, E. Yu. Soldatov38, U. Soldevila165, A. A. Solodkov34j, S. Solomon27, A. Soloshenko38, O. V. Solovyanov40, P. Sommer49, A. Sopczak133, A. L. Sopio51, F. Sopkova29b, J. D. Sorenson114, I. R. Sotarriva Alvarez139, V. Sothilingam62a, O. J. Soto Sandoval138c,138b, S. Sottocornola67, R. Soualah83a, D. South47, N. Soybelman171, S. Spagnolo69a,69b, A. S. Spellman124, D. Sperlich53, B. Spisso71a,71b, L. Splendori102, M. Spousta134, E. J. Staats35, R. Stamen62a, E. Stanecka86, W. Stanek-Maslouska47, M. V. Stange49, B. Stanislaus18a, M. M. Stanitzki47, G. H. Stark137, J. Stark89, P. Staroba132, P. Starovoitov83d, R. Staszewski86, C. Stauch109, G. Stavropoulos45, A. Stefl37, A. Stein100, P. Steinberg30, B. Stelzer145,159a, H. J. Stelzer130, O. Stelzer159a, H. Stenzel57, T. J. Stevenson149, G. A. Stewart47, G. Stoicea28b, M. Stolarski131a, S. Stonjek110, A. Straessner49, J. Strandberg147, S. Strandberg46a,46b, M. Stratmann173, M. Strauss121, T. Strebler102, P. Strizenec29b, R. Ströhmer168, D. M. Strom124, R. Stroynowski44, A. Strubig46a,46b, S. A. Stucci30, B. Stugu17, J. Stupak121, N. A. Styles47, D. Su146, S. Su61, X. Su61, D. Suchy29a, A. D. Sudhakar Ponnu54, L. Sudit171, Y. Sue82, K. Sugizaki129, D. M. S. Sultan127, L. Sultanaliyeva25, S. Sultansoy3b, S. Sun172, W. Sun14, S. Sundar Raman166, N. Sur98, J. P. Surdutovich120, N. Suri, Jr.174, M. R. Sutton149, M. Svatos132, P. N. Swallow33, S. N. Swatman37, M. Swiatlowski159a, A. Swoboda37, I. Sykora29a, M. Sykora134, T. Sykora134, D. Ta100, K. Tackmann47,oo, A. Taffard162, R. Tafirout159a, Y. Takubo82, M. Talby102, N. M. Tamir154, A. Tanaka156, J. Tanaka156, R. Tanaka65, M. Tanasini148, Z. Tao166, S. Tapia Araya138g, S. Tapprogge100, A. Tarek Abouelfadl Mohamed37, S. Tarem153, K. Tariq14, G. Tarna37, G. F. Tartarelli70a, M. J. Tartarin141b, P. Tas134, M. Tasevsky132, E. Tassi43b,43a, A. C. Tate164, Y. Tayalati36e,pp, G. N. Taylor105, W. Taylor159b, R. J. Taylor Vara165, A. S. Tegetmeier89, P. Teixeira-Dias95, J. J. Teoh158, K. Terashi156, J. Terron99, S. Terzo13, M. Testa52, R. J. Teuscher158,o, A. Thaler78, T. Theveneaux-Pelzer102, J. P. Thomas21, E. A. Thompson18a, P. D. Thompson21, E. Thomson129, R. E. Thornberry30, T. M. Thory-Rao21, C. N. Thotamuna Wijewardhana148, C. Tian61, Y. Tian55, V. Tikhomirov80, Yu. A. Tikhonov38, D. Timoshyn134, E. X. L. Ting1, P. Tipton174, A. Tishelman-Charny30, K. Todome139, S. Todorova-Nova134, L. Toffolin68a,68c, M. Togawa82, J. Tojo88, S. Tokár29a, O. Toldaiev67, G. Tolkachev102, M. Tomoto82, L. Tompkins146, E. Torrence124, H. Torres89, D. I. Torres Arza138g, E. Torres Reoyo165, E. Torró Pastor165, M. Toscani31, C. Tosciri39, M. Tost11, D. R. Tovey142, T. Trefzger168, P. M. Tricarico13, A. Tricoli30, I. M. Trigger159a, S. Trincaz-Duvoid128, D. A. Trischuk167, A. Tropina38, D. Truncali75a,75b, L. Truong34c, M. Trzebinski86, A. Trzupek86, F. Tsai148, A. Tsiamis155, P. V. Tsiareshka38, S. Tsigaridas159a, A. Tsirigotis155,dd, V. Tsiskaridze152a, E. G. Tskhadadze152a, H. F. Tsoi129, Y. Tsujikawa87, V. Tsulaia18a, K. Tsuri119, D. Tsybychev148, Y. Tu63b, A. Tudorache28b, V. Tudorache28b, S. B. Tuncay127, S. Turchikhin56b,56a, I. Turk Cakir3a, R. Turra70a, T. Turtuvshin38,qq, P. M. Tuts41, Y. Uematsu82, F. Ukegawa160, P. A. Ulloa Poblete138c,138b, G. Unal37, A. Undrus30, J. Urban29b, P. Urrejola138e, G. Usai8, R. Ushioda157, M. Usman108, F. Ustuner51, Z. Uysal80, V. Vacek133, B. Vachon104, T. Vafeiadis37, A. Vaitkus96, C. Valderanis109, E. Valdes Santurio46a,46b, M. Valente37, S. Valentinetti24b,24a, A. Valero165, E. Valiente Moreno165, A. Vallier89, J. A. Valls Ferrer165, D. R. Van Arneman116, R. Van Den Broucke128, A. Van Der Graaf48, H. Z. Van Der Schyf34j, P. Van Gemmeren6, M. Van Rijnbach37, S. Van Stroud96, I. Van Vulpen116, P. Vana134, M. Vanadia75a,75b, U. M. Vande Voorde147, W. Vandelli37, E. R. Vandewall146, D. Vannicola154, R. Vari74a, M. Varma174, E. W. Varnes7, C. Varni85a, D. Varouchas65, L. Varriale165, K. E. Varvell150, M. E. Vasile28b, A. Vasileiadou9, L. Vaslin82, M. D. Vassilev146, A. Vasyukov38, L. M. Vaughan122, R. Vavricka134, T. Vazquez Schroeder13, J. Veatch32, V. Vecchio101, M. J. Veen103, I. Veliscek30, I. Velkovska93, L. M. Veloce158, F. Veloso131a,131c, A. G. Veltman51, S. H. Venetianer161, S. Veneziano74a, A. Ventura69a,69b, A. Verbytskyi110, M. Verducci73a,73b, C. Vergis94, M. Verissimo De Araujo81b, W. Verkerke116, J. C. Vermeulen116, C. Vernieri146, M. Vessella162, M. C. Vetterli145,t, A. Vgenopoulos100, N. Viaux Maira138g,rr, L. Vicenik133, T. Vickey142, O. E. Vickey Boeriu142, G. H. A. Viehhauser127, L. Vigani62b, M. Vigl110, M. Villa24b,24a, M. Villaplana Perez165, E. M. Villhauer39, E. Vilucchi52, M. Vincent165, M. G. Vincter35, A. Visibile116, A. Visive116, C. Vittori161, I. Vivarelli24b,24a, M. I. Vivas Albornoz47, E. Voevodina110, F. Vogel109, J. C. Voigt49, P. Vokac133, Yu. Volkotrub85b, L. Vomberg25, E. Von Toerne25, B. Vormwald37, K. Vorobev50, M. Vos165, K. Voss144, M. Vozak37, L. Vozdecky121, N. Vranjes16, M. Vranjes Milosavljevic16, M. Vreeswijk116, N. K. Vu112a, R. Vuillermet37, O. Vujinovic100, I. Vukotic39, I. K. Vyas35, J. F. Wack33, A. Wada111, S. Wada160, C. Wagner146, J. M. Wagner18a, W. Wagner173, S. Wahdan173, H. Wahlberg90, C. H. Waits121, J. Walder135, R. Walker109, K. Walkingshaw Pass58, W. Walkowiak144, A. Wall129, E. J. Wallin98, T. Wamorkar146, K. Wandall-Christensen165, A. Wang61, A. Z. Wang137, C. Wang47, C. Wang11, H. Wang18a, J. Wang63c, P. Wang101, P. Wang96, R. Wang60, R. Wang106, R. Wang6, S. M. Wang151, S. Wang14,ss, T. Wang115, T. Wang61, W. T. Wang127, W. Wang113c, X. Wang164, X. Wang141a, X. Wang47, Y. Wang148, Y. Wang114, Z. Wang106, Z. Wang14, Z. Wang63b, C. Wanotayaroj82, A. Warburton104, A. L. Warnerbring144, S. Waterhouse96, A. T. Watson21, H. Watson51, M. F. Watson21, E. Watton37, G. Watts140, B. M. Waugh96, J. M. Webb53, C. Weber30, M. S. Weber20, C. Wei61, Y. Wei53, A. R. Weidberg127, E. J. Weik118, J. Weingarten48, C. Weiser53, C. J. Wells47, P. S. Wells37, T. Wenaus30, T. Wengler37, N. S. Wenke110, N. Wermes25, D. Werner47, M. Wessels62a, A. M. Wharton91, A. S. White37, A. White8, M. J. White1, D. Whiteson162, L. Wickremasinghe125, W. Wiedenmann172, M. Wielers135, R. Wierda147, C. Wiglesworth42, H. G. Wilkens37, J. J. H. Wilkinson33, S. Williams33, S. Willocq103, D. J. Wilson101, P. J. Windischhofer39, F. I. Winkel31, F. Winklmeier124, B. T. Winter53, M. Wittgen146, M. Wobisch97, T. Wojtkowski59, Z. Wolffs116, J. Wollrath37, M. W. Wolter86, H. Wolters131a,131c, M. C. Wong137, E. L. Woodward41, S. D. Worm47, B. K. Wosiek86, K. A. Wozniak55, K. W. Woźniak86, S. Wozniewski54, K. Wraight58, C. Wu158, C. Wu21, J. Wu156, M. Wu112b, M. Wu115, S. L. Wu172, S. Wu14,ss, X. Wu61, Y. Q. Wu158, Y. Wu61, Z. Wu102, Z. Wu112a, J. Wuerzinger110, T. R. Wyatt101, B. M. Wynne51, S. Xella42, L. Xia112a, M. Xie61, A. Xiong124, I. Xiotidis37, D. Xu14, H. Xu61, L. Xu61, R. Xu129, T. Xu106, W. Xu112a, Y. Xu140, Z. Xu51, R. Xue130, B. Yabsley150, S. Yacoob11, Y. Yamaguchi82, E. Yamashita156, H. Yamauchi160, T. Yamazaki18a, Y. Yamazaki84, S. Yan58, Z. Yan103, C. Yang18a, H. J. Yang141a, H. T. Yang61, S. Yang61, X. Yang37, X. Yang14, Y. Yang156, Y. Yang61, W-M. Yao18a, C. L. Yardley149, J. Ye14, S. Ye30, X. Ye61, I. Yeletskikh38, B. Yeo18b, M. R. Yexley96, T. P. Yildirim127, K. Yorita170, C. J. S. Young37, C. Young146, I. N. L. Young58, N. D. Young124, Y. Yu61, J. Yuan14,112c,ss, M. Yuan106, R. Yuan141b, L. Yue96, M. Zaazoua61, B. Zabinski86, I. Zahir36a, Q. U. A. Zahoor51, A. Zaio56b,56a, Z. K. Zak86, T. Zakareishvili165, S. Zambito55, J. Zang156, R. Zanzottera70a,70b, O. Zaplatilek133, E. Zaya147, C. Zeitnitz173, H. Zeng14, D. T. Zenger, Jr.27, T. Ženiš29a, S. Zenz94, D. Zerwas65, W. Zhan61, B. Zhang169, D. F. Zhang142, G. Zhang14,ss, J. Zhang113b, J. Zhang6, L. Zhang61, L. Zhang112a, P. Zhang14,112c, R. Zhang112a, S. Zhang36e, Y. Zhang140, Y. Zhang96, Y. Zhang61, Y. Zhang112a, Z. Zhang101, Z. Zhang18a, Z. Zhang113b, Z. Zhang65, H. Zhao140, T. Zhao113b, Y. Zhao35, Z. Zhao61, Z. Zhao61, A. Zhemchugov38, J. Zheng112a, K. Zheng164, L. Zheng113b, X. Zheng61, Z. Zheng146, D. Zhong164, B. Zhou106, B. Zhou141b,141a, N. Zhou141a, Y. Zhou15, Y. Zhou112a, Y. Zhou7, Z. Zhou61, J. Zhu106, X. Zhu141b, Y. Zhu141a, X. Zhuang14, K. Zhukov67, P. Ziakas4, N. I. Zimine38, J. Zinsser62b, M. Ziolkowski144, L. Živković16, A. Zoccoli24b,24a, K. Zoch37, A. Zografos37, T. G. Zorbas142, and L. Zwalinski37 (ATLAS Collaboration)

  • 1Department of Physics, University of Adelaide, Adelaide, Australia
  • 2Department of Physics, University of Alberta, Edmonton, Alberta, Canada
  • 3aDepartment of Physics, Ankara University, Ankara, Türkiye
  • 3bDivision of Physics, TOBB University of Economics and Technology, Ankara, Türkiye
  • 4LAPP, Université Savoie Mont Blanc, CNRS/IN2P3, Annecy, France
  • 5APC, Université Paris Cité, CNRS/IN2P3, Paris, France
  • 6High Energy Physics Division, Argonne National Laboratory, Argonne, Illinois, USA
  • 7Department of Physics, University of Arizona, Tucson, Arizona, USA
  • 8Department of Physics, University of Texas at Arlington, Arlington, Texas, USA
  • 9Physics Department, National and Kapodistrian University of Athens, Athens, Greece
  • 10Physics Department, National Technical University of Athens, Zografou, Greece
  • 11Department of Physics, University of Texas at Austin, Austin, Texas, USA
  • 12Institute of Physics, Azerbaijan Academy of Sciences, Baku, Azerbaijan
  • 13Institut de Física d’Altes Energies (IFAE), Barcelona Institute of Science and Technology, Barcelona, Spain
  • 14Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China
  • 15Physics Department, Tsinghua University, Beijing, China
  • 16Institute of Physics, University of Belgrade, Belgrade, Serbia
  • 17Department for Physics and Technology, University of Bergen, Bergen, Norway
  • 18aPhysics Division, Lawrence Berkeley National Laboratory, Berkeley, California, USA
  • 18bUniversity of California, Berkeley, California, USA
  • 19Institut für Physik, Humboldt Universität zu Berlin, Berlin, Germany
  • 20Albert Einstein Center for Fundamental Physics and Laboratory for High Energy Physics, University of Bern, Bern, Switzerland
  • 21School of Physics and Astronomy, University of Birmingham, Birmingham, United Kingdom
  • 22aDepartment of Physics, Bogazici University, Istanbul, Türkiye
  • 22bDepartment of Physics Engineering, Gaziantep University, Gaziantep, Türkiye
  • 22cDepartment of Physics, Istanbul University, Istanbul, Türkiye
  • 23aFacultad de Ciencias y Centro de Investigaciónes, Universidad Antonio Nariño, Bogotá, Colombia
  • 23bDepartamento de Física, Universidad Nacional de Colombia, Bogotá, Colombia
  • 24aDipartimento di Fisica e Astronomia A. Righi, Università di Bologna, Bologna, Italy
  • 24bINFN Sezione di Bologna, Bologna, Italy
  • 25Physikalisches Institut, Universität Bonn, Bonn, Germany
  • 26Department of Physics, Boston University, Boston, Massachusetts, USA
  • 27Department of Physics, Brandeis University, Waltham, Massachusetts, USA
  • 28aTransilvania University of Brasov, Brasov, Romania
  • 28bHoria Hulubei National Institute of Physics and Nuclear Engineering, Bucharest, Romania
  • 28cDepartment of Physics, Alexandru Ioan Cuza University of Iasi, Iasi, Romania
  • 28dNational Institute for Research and Development of Isotopic and Molecular Technologies, Physics Department, Cluj-Napoca, Romania
  • 28eNational University of Science and Technology Politechnica, Bucharest, Romania
  • 28fWest University in Timisoara, Timisoara, Romania
  • 28gFaculty of Physics, University of Bucharest, Bucharest, Romania
  • 29aFaculty of Mathematics, Physics and Informatics, Comenius University, Bratislava, Slovak Republic
  • 29bDepartment of Subnuclear Physics, Institute of Experimental Physics of the Slovak Academy of Sciences, Kosice, Slovak Republic
  • 30Physics Department, Brookhaven National Laboratory, Upton, New York, USA
  • 31Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Departamento de Física, y CONICET, Instituto de Física de Buenos Aires (IFIBA), Buenos Aires, Argentina
  • 32California State University, Long Beach, California, USA
  • 33Cavendish Laboratory, University of Cambridge, Cambridge, United Kingdom
  • 34aDepartment of Physics, University of Cape Town, Cape Town, South Africa
  • 34biThemba Labs, Western Cape, South Africa
  • 34cDepartment of Mechanical Engineering Science, University of Johannesburg, Johannesburg, South Africa
  • 34dNational Institute of Physics, University of the Philippines Diliman (Philippines), Quezon City, Philippines
  • 34eDepartment of Physics, Stellenbosch University, Matieland, South Africa
  • 34fUniversity of KwaZulu-Natal, School of Agriculture and Science, Mathematics, Westville, South Africa
  • 34gUniversity of South Africa, Department of Physics, Pretoria, South Africa
  • 34hUniversity of Pretoria, Department of Mechanical and Aeronautical Engineering, Pretoria, South Africa
  • 34iUniversity of Zululand, KwaDlangezwa, South Africa
  • 34jSchool of Physics, University of the Witwatersrand, Johannesburg, South Africa
  • 35Department of Physics, Carleton University, Ottawa, Ontario, Canada
  • 36aFaculté des Sciences Ain Chock, Université Hassan II de Casablanca, Casablanca, Morocco
  • 36bFaculté des Sciences, Université Ibn-Tofail, Kénitra, Morocco
  • 36cFaculté des Sciences Semlalia, Université Cadi Ayyad, LPHEA-Marrakech, Morocco
  • 36dLPMR, Faculté des Sciences, Université Mohamed Premier, Oujda, Morocco
  • 36eFaculté des sciences, Université Mohammed V, Rabat, Morocco
  • 36fInstitute of Applied Physics, Mohammed VI Polytechnic University, Ben Guerir, Morocco
  • 37CERN, Geneva, Switzerland
  • 38Affiliated with an international laboratory covered by a cooperation agreement with CERN
  • 39Enrico Fermi Institute, University of Chicago, Chicago, Illinois, USA
  • 40LPC, Université Clermont Auvergne, CNRS/IN2P3, Clermont-Ferrand, France
  • 41Nevis Laboratory, Columbia University, Irvington, New York, USA
  • 42Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark
  • 43aDipartimento di Fisica, Università della Calabria, Rende, Italy
  • 43bINFN Gruppo Collegato di Cosenza, Laboratori Nazionali di Frascati, Frascati, Italy
  • 44Physics Department, Southern Methodist University, Dallas, Texas, USA
  • 45National Centre for Scientific Research “Demokritos,” Agia Paraskevi, Greece
  • 46aDepartment of Physics, Stockholm University, Stockholm, Sweden
  • 46bOskar Klein Centre, Stockholm, Sweden
  • 47Deutsches Elektronen-Synchrotron DESY, Hamburg and Zeuthen, Germany
  • 48Fakultät Physik, Technische Universität Dortmund, Dortmund, Germany
  • 49Institut für Kern- und Teilchenphysik, Technische Universität Dresden, Dresden, Germany
  • 50Department of Physics, Duke University, Durham, North Carolina, USA
  • 51SUPA - School of Physics and Astronomy, University of Edinburgh, Edinburgh, United Kingdom
  • 52INFN e Laboratori Nazionali di Frascati, Frascati, Italy
  • 53Physikalisches Institut, Albert-Ludwigs-Universität Freiburg, Freiburg, Germany
  • 54II. Physikalisches Institut, Georg-August-Universität Göttingen, Göttingen, Germany
  • 55Département de Physique Nucléaire et Corpusculaire, Université de Genève, Genève, Switzerland
  • 56aDipartimento di Fisica, Università di Genova, Genova, Italy
  • 56bINFN Sezione di Genova, Genova, Italy
  • 57II. Physikalisches Institut, Justus-Liebig-Universität Giessen, Giessen, Germany
  • 58SUPA - School of Physics and Astronomy, University of Glasgow, Glasgow, United Kingdom
  • 59LPSC, Université Grenoble Alpes, CNRS/IN2P3, Grenoble INP, Grenoble, France
  • 60Laboratory for Particle Physics and Cosmology, Harvard University, Cambridge, Massachusetts, USA
  • 61Department of Modern Physics and State Key Laboratory of Particle Detection and Electronics, University of Science and Technology of China, Hefei, China
  • 62aKirchhoff-Institut für Physik, Ruprecht-Karls-Universität Heidelberg, Heidelberg, Germany
  • 62bPhysikalisches Institut, Ruprecht-Karls-Universität Heidelberg, Heidelberg, Germany
  • 63aDepartment of Physics, Chinese University of Hong Kong, Shatin, N.T., Hong Kong, China
  • 63bDepartment of Physics, University of Hong Kong, Hong Kong, China
  • 63cDepartment of Physics and Institute for Advanced Study, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China
  • 64Department of Physics, National Tsing Hua University, Hsinchu, Taiwan
  • 65IJCLab, Université Paris-Saclay, CNRS/IN2P3, 91405, Orsay, France
  • 66Centro Nacional de Microelectrónica (IMB-CNM-CSIC), Barcelona, Spain
  • 67Department of Physics, Indiana University, Bloomington, Indiana, USA
  • 68aINFN Gruppo Collegato di Udine, Sezione di Trieste, Udine, Italy
  • 68bICTP, Trieste, Italy
  • 68cDipartimento Politecnico di Ingegneria e Architettura, Università di Udine, Udine, Italy
  • 69aINFN Sezione di Lecce, Lecce, Italy
  • 69bDipartimento di Matematica e Fisica, Università del Salento, Lecce, Italy
  • 70aINFN Sezione di Milano, Milano, Italy
  • 70bDipartimento di Fisica, Università di Milano, Milano, Italy
  • 71aINFN Sezione di Napoli, Italy
  • 71bDipartimento di Fisica, Università di Napoli, Napoli, Italy
  • 72aINFN Sezione di Pavia, Pavia, Italy
  • 72bDipartimento di Fisica, Università di Pavia, Pavia, Italy
  • 73aINFN Sezione di Pisa, Pisa, Italy
  • 73bDipartimento di Fisica E. Fermi, Università di Pisa, Pisa, Italy
  • 74aINFN Sezione di Roma, Roma, Italy
  • 74bDipartimento di Fisica, Sapienza Università di Roma, Roma, Italy
  • 75aINFN Sezione di Roma Tor Vergata, Roma, Italy
  • 75bDipartimento di Fisica, Università di Roma Tor Vergata, Roma, Italy
  • 76aINFN Sezione di Roma Tre, Roma, Italy
  • 76bDipartimento di Matematica e Fisica, Università Roma Tre, Roma, Italy
  • 77aINFN-TIFPA, Trento, Italy
  • 77bUniversità degli Studi di Trento, Trento, Italy
  • 78Universität Innsbruck, Department of Astro and Particle Physics, Innsbruck, Austria
  • 79Department of Physics and Astronomy, Iowa State University, Ames, Iowa, USA
  • 80Istinye University, Sariyer, Istanbul, Türkiye
  • 81aDepartamento de Engenharia Elétrica, Universidade Federal de Juiz de Fora (UFJF), Juiz de Fora, Brazil
  • 81bUniversidade Federal do Rio De Janeiro COPPE/EE/IF, Rio de Janeiro, Brazil
  • 81cInstituto de Física, Universidade de São Paulo, São Paulo, Brazil
  • 81dRio de Janeiro State University, Rio de Janeiro, Brazil
  • 81eFederal University of Bahia, Bahia, Brazil
  • 82KEK, High Energy Accelerator Research Organization, Tsukuba, Japan
  • 83aKhalifa University of Science and Technology, Abu Dhabi, United Arab Emirates
  • 83bNew York University Abu Dhabi, Abu Dhabi, United Arab Emirates
  • 83cUnited Arab Emirates University, Al Ain, United Arab Emirates
  • 83dUniversity of Sharjah, Sharjah, United Arab Emirates
  • 84Graduate School of Science, Kobe University, Kobe, Japan
  • 85aAGH University of Krakow, Faculty of Physics and Applied Computer Science, Krakow, Poland
  • 85bMarian Smoluchowski Institute of Physics, Jagiellonian University, Krakow, Poland
  • 86Institute of Nuclear Physics Polish Academy of Sciences, Krakow, Poland
  • 87Faculty of Science, Kyoto University, Kyoto, Japan
  • 88Research Center for Advanced Particle Physics and Department of Physics, Kyushu University, Fukuoka, Japan
  • 89L2IT, Université de Toulouse, CNRS/IN2P3, UPS, Toulouse, France
  • 90Instituto de Física La Plata, Universidad Nacional de La Plata and CONICET, La Plata, Argentina
  • 91Physics Department, Lancaster University, Lancaster, United Kingdom
  • 92Oliver Lodge Laboratory, University of Liverpool, Liverpool, United Kingdom
  • 93Department of Experimental Particle Physics, Jožef Stefan Institute and Department of Physics, University of Ljubljana, Ljubljana, Slovenia
  • 94Department of Physics and Astronomy, Queen Mary University of London, London, United Kingdom
  • 95Department of Physics, Royal Holloway University of London, Egham, United Kingdom
  • 96Department of Physics and Astronomy, University College London, London, United Kingdom
  • 97Louisiana Tech University, Ruston, Louisiana, USA
  • 98Fysiska institutionen, Lunds universitet, Lund, Sweden
  • 99Departamento de Física Teorica C-15 and CIAFF, Universidad Autónoma de Madrid, Madrid, Spain
  • 100Institut für Physik, Universität Mainz, Mainz, Germany
  • 101School of Physics and Astronomy, University of Manchester, Manchester, United Kingdom
  • 102CPPM, Aix-Marseille Université, CNRS/IN2P3, Marseille, France
  • 103Department of Physics, University of Massachusetts, Amherst, Massachusetts, USA
  • 104Department of Physics, McGill University, Montreal, Quebec, Canada
  • 105School of Physics, University of Melbourne, Victoria, Australia
  • 106Department of Physics, University of Michigan, Ann Arbor, Michigan, USA
  • 107Department of Physics and Astronomy, Michigan State University, East Lansing, Michigan, USA
  • 108Group of Particle Physics, University of Montreal, Montreal, Quebec, Canada
  • 109Fakultät für Physik, Ludwig-Maximilians-Universität München, München, Germany
  • 110Max-Planck-Institut für Physik (Werner-Heisenberg-Institut), München, Germany
  • 111Graduate School of Science and Kobayashi-Maskawa Institute, Nagoya University, Nagoya, Japan
  • 112aDepartment of Physics, Nanjing University, Nanjing, China
  • 112bSchool of Science, Shenzhen Campus of Sun Yat-sen University, Shenzhen, China
  • 112cUniversity of Chinese Academy of Science (UCAS), Beijing, China
  • 113aSchool of Physics, Nankai University, Tianjin, China
  • 113bInstitute of Frontier and Interdisciplinary Science and Key Laboratory of Particle Physics and Particle Irradiation (MOE), Shandong University, Qingdao, China
  • 113cSchool of Physics, Zhengzhou University, Zhengzhou, China
  • 114Department of Physics and Astronomy, University of New Mexico, Albuquerque, New Mexico, USA
  • 115Institute for Mathematics, Astrophysics and Particle Physics, Radboud University/Nikhef, Nijmegen, Netherlands
  • 116Nikhef National Institute for Subatomic Physics and University of Amsterdam, Amsterdam, Netherlands
  • 117Department of Physics, Northern Illinois University, DeKalb, Illinois, USA
  • 118Department of Physics, New York University, New York, New York, USA
  • 119Ochanomizu University, Otsuka, Bunkyo-ku, Tokyo, Japan
  • 120Ohio State University, Columbus, Ohio, USA
  • 121Homer L. Dodge Department of Physics and Astronomy, University of Oklahoma, Norman, Oklahoma, USA
  • 122Department of Physics, Oklahoma State University, Stillwater, Oklahoma, USA
  • 123Palacký University, Joint Laboratory of Optics, Olomouc, Czech Republic
  • 124Institute for Fundamental Science, University of Oregon, Eugene, Oregon, USA
  • 125Graduate School of Science, University of Osaka, Osaka, Japan
  • 126Department of Physics, University of Oslo, Oslo, Norway
  • 127Department of Physics, Oxford University, Oxford, United Kingdom
  • 128LPNHE, Sorbonne Université, Université Paris Cité, CNRS/IN2P3, Paris, France
  • 129Department of Physics, University of Pennsylvania, Philadelphia, Pennsylvania, USA
  • 130Department of Physics and Astronomy, University of Pittsburgh, Pittsburgh, Pennsylvania, USA
  • 131aLaboratório de Instrumentação e Física Experimental de Partículas - LIP, Lisboa, Portugal
  • 131bDepartamento de Física, Faculdade de Ciências, Universidade de Lisboa, Lisboa, Portugal
  • 131cDepartamento de Física, Universidade de Coimbra, Coimbra, Portugal
  • 131dCentro de Física Nuclear da Universidade de Lisboa, Lisboa, Portugal
  • 131eDepartamento de Física, Escola de Ciências, Universidade do Minho, Braga, Portugal
  • 131fDepartamento de Física Teórica y del Cosmos, Universidad de Granada, Granada (Spain), Spain
  • 131gDepartamento de Física, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal
  • 132Institute of Physics of the Czech Academy of Sciences, Prague, Czech Republic
  • 133Czech Technical University in Prague, Prague, Czech Republic
  • 134Charles University, Faculty of Mathematics and Physics, Prague, Czech Republic
  • 135Particle Physics Department, Rutherford Appleton Laboratory, Didcot, United Kingdom
  • 136IRFU, CEA, Université Paris-Saclay, Gif-sur-Yvette, France
  • 137Santa Cruz Institute for Particle Physics, University of California Santa Cruz, Santa Cruz, California, USA
  • 138aDepartamento de Física, Pontificia Universidad Católica de Chile, Santiago, Chile
  • 138bMillennium Institute for Subatomic physics at high energy frontier (SAPHIR), Santiago, Chile
  • 138cInstituto de Investigación Multidisciplinario en Ciencia y Tecnología, y Departamento de Física, Universidad de La Serena, La Serena, Chile
  • 138dUniversidad Andres Bello, Department of Physics, Santiago, Chile
  • 138eUniversidad San Sebastian, Recoleta, Chile
  • 138fInstituto de Alta Investigación, Universidad de Tarapacá, Arica, Chile
  • 138gDepartamento de Física, Universidad Técnica Federico Santa María, Valparaíso, Chile
  • 139Department of Physics, Institute of Science, Tokyo, Japan
  • 140Department of Physics, University of Washington, Seattle, Washington, USA
  • 141aState Key Laboratory of Dark Matter Physics, School of Physics and Astronomy, Shanghai Jiao Tong University, Key Laboratory for Particle Astrophysics and Cosmology (MOE), SKLPPC, Shanghai, China
  • 141bState Key Laboratory of Dark Matter Physics, Tsung-Dao Lee Institute, Shanghai Jiao Tong University, Shanghai, China
  • 142Department of Physics and Astronomy, University of Sheffield, Sheffield, United Kingdom
  • 143Department of Physics, Shinshu University, Nagano, Japan
  • 144Department Physik, Universität Siegen, Siegen, Germany
  • 145Department of Physics, Simon Fraser University, Burnaby, British Columbia, Canada
  • 146SLAC National Accelerator Laboratory, Stanford, California, USA
  • 147Department of Physics, Royal Institute of Technology, Stockholm, Sweden
  • 148Departments of Physics and Astronomy, Stony Brook University, Stony Brook, New York, USA
  • 149Department of Physics and Astronomy, University of Sussex, Brighton, United Kingdom
  • 150School of Physics, University of Sydney, Sydney, Australia
  • 151Institute of Physics, Academia Sinica, Taipei, Taiwan
  • 152aE. Andronikashvili Institute of Physics, Iv. Javakhishvili Tbilisi State University, Tbilisi, Georgia
  • 152bHigh Energy Physics Institute, Tbilisi State University, Tbilisi, Georgia
  • 152cUniversity of Georgia, Tbilisi, Georgia
  • 153Department of Physics, Technion, Israel Institute of Technology, Haifa, Israel
  • 154Raymond and Beverly Sackler School of Physics and Astronomy, Tel Aviv University, Tel Aviv, Israel
  • 155Department of Physics, Aristotle University of Thessaloniki, Thessaloniki, Greece
  • 156International Center for Elementary Particle Physics and Department of Physics, University of Tokyo, Tokyo, Japan
  • 157Graduate School of Science and Technology, Tokyo Metropolitan University, Tokyo, Japan
  • 158Department of Physics, University of Toronto, Toronto, Ontario, Canada
  • 159aTRIUMF, Vancouver, British Columbia, Canada
  • 159bDepartment of Physics and Astronomy, York University, Toronto, Ontario, Canada
  • 160Division of Physics and Tomonaga Center for the History of the Universe, Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Japan
  • 161Department of Physics and Astronomy, Tufts University, Medford, Massachusetts, USA
  • 162Department of Physics and Astronomy, University of California Irvine, Irvine, California, USA
  • 163Department of Physics and Astronomy, University of Uppsala, Uppsala, Sweden
  • 164Department of Physics, University of Illinois, Urbana, Illinois, USA
  • 165Instituto de Física Corpuscular (IFIC), Centro Mixto Universidad de Valencia - CSIC, Valencia, Spain
  • 166Department of Physics, University of British Columbia, Vancouver, British Columbia, Canada
  • 167Department of Physics and Astronomy, University of Victoria, Victoria, British Columbia, Canada
  • 168Fakultät für Physik und Astronomie, Julius-Maximilians-Universität Würzburg, Würzburg, Germany
  • 169Department of Physics, University of Warwick, Coventry, United Kingdom
  • 170Waseda University, Tokyo, Japan
  • 171Department of Particle Physics and Astrophysics, Weizmann Institute of Science, Rehovot, Israel
  • 172Department of Physics, University of Wisconsin, Madison, Wisconsin, USA
  • 173Fakultät für Mathematik und Naturwissenschaften, Fachgruppe Physik, Bergische Universität Wuppertal, Wuppertal, Germany
  • 174Department of Physics, Yale University, New Haven, Connecticut, USA
  • 175Yerevan Physics Institute, Yerevan, Armenia

  • *Full author list given at the end of the Letter.
  • aDeceased.
  • bAlso at Department of Physics, King’s College London, London, United Kingdom.
  • cAlso at Institute of Physics, Azerbaijan Academy of Sciences, Baku, Azerbaijan.
  • dAlso at Imam Mohammad Ibn Saud Islamic University, Saudi Arabia.
  • eAlso at Department of Physics, University of Thessaly, Greece.
  • fAlso at An-Najah National University, Nablus, Palestine.
  • gAlso at Department of Physics, University of Fribourg, Fribourg, Switzerland.
  • hAlso at Department of Physics, Westmont College, Santa Barbara, California, USA.
  • iAlso at Departament de Fisica de la Universitat Autonoma de Barcelona, Barcelona, Spain.
  • jAlso at University of Siena, Siena, Italy.
  • kAlso at Affiliated with an institute formerly covered by a cooperation agreement with CERN.
  • lAlso at The Collaborative Innovation Center of Quantum Matter (CICQM), Beijing, China.
  • mAlso at Faculty of Physics, Sofia University, “St. Kliment Ohridski,” Sofia, Bulgaria.
  • nAlso at Università di Napoli Parthenope, Napoli, Italy.
  • oAlso at Institute of Particle Physics (IPP), Edmonton, Alberta, Canada.
  • pAlso at Department of Physics, Bolu Abant Izzet Baysal University, Bolu, Türkiye.
  • qAlso at Faculty of Physics, University of Bucharest, Romania.
  • rAlso at Borough of Manhattan Community College, City University of New York, New York, New York, USA.
  • sAlso at National Institute of Physics, University of the Philippines Diliman (Philippines), Philippines.
  • tAlso at TRIUMF, Vancouver, British Columbia, Canada.
  • uAlso at Universita degli Studi Link, Roma, Italy.
  • vAlso at Department of Financial and Management Engineering, University of the Aegean, Chios, Greece.
  • wAlso at University and INFN Torino, Torino, Italy.
  • xAlso at Institucio Catalana de Recerca i Estudis Avancats, ICREA, Barcelona, Spain.
  • yAlso at Henan University, Kaifeng, China.
  • zAlso at Yeditepe University, Physics Department, Istanbul, Türkiye.
  • aaAlso at Institute of Theoretical Physics, Ilia State University, Tbilisi, Georgia.
  • bbAlso at CERN, Geneva, Switzerland.
  • ccAlso at Center for Interdisciplinary Research and Innovation (CIRI-AUTH), Thessaloniki, Greece.
  • ddAlso at Hellenic Open University, Patras, Greece.
  • eeAlso at Department of Modern Physics and State Key Laboratory of Particle Detection and Electronics, University of Science and Technology of China, Hefei, China.
  • ffAlso at Department of Physics, Stellenbosch University, Stellenbosch, South Africa.
  • ggAlso at School of Physics, University of the Witwatersrand, Johannesburg, South Africa.
  • hhAlso at Department of Physics, Ben Gurion University of the Negev, Beer Sheva, Israel.
  • iiAlso at University of Colorado Boulder, Department of Physics, Boulder, Colorado, USA.
  • jjAlso at Département de Physique Nucléaire et Corpusculaire, Université de Genève, Genève, Switzerland.
  • kkAlso at Centre of Physics of the Universities of Minho and Porto (CF-UM-UP), Minho, Portugal.
  • llAlso at Indian Institute of Technology (IIT), Jodhpur, India.
  • mmAlso at Institute for Nuclear Research and Nuclear Energy (INRNE) of the Bulgarian Academy of Sciences, Sofia, Bulgaria.
  • nnAlso at Washington College, Chestertown, Maryland, USA.
  • ooAlso at Institut für Experimentalphysik, Universität Hamburg, Hamburg, Germany.
  • ppAlso at Institute of Applied Physics, Mohammed VI Polytechnic University, Ben Guerir, Morocco.
  • qqAlso at Institute of Physics and Technology, Mongolian Academy of Sciences, Ulaanbaatar, Mongolia.
  • rrAlso at Millennium Institute for Subatomic physics at high energy frontier (SAPHIR), Santiago, Chile.
  • ssAlso at University of Chinese Academy of Sciences (UCAS), Beijing, China.

Phys. Rev. Lett. 137, 071801 – Published 11 August, 2026

DOI: https://doi.org/10.1103/vbxg-71c2

Abstract

This Letter reports on the first evidence of inclusive Higgs-boson production at high transverse momentum in the bb¯ final state, reconstructed in a single large-radius jet. The results are based on proton-proton collision data recorded by the ATLAS detector at the Large Hadron Collider at a center-of-mass energies of 13 and 13.6 TeV, corresponding to a total integrated luminosity of 301  fb−1. The study profits from the large background suppression provided by the use of a new transformer-based algorithm for jet identification and the sharper mass and transverse momentum, pT, resolution from a dedicated regression model. The yield relative to the standard model prediction for Higgs bosons produced at pT larger than 450 GeV is measured to be 1.53±0.27)−0.27+0.33±0.17, where the first uncertainty is statistical, the second is experimental systematic, and the third accounts for theory systematic, corresponding to an observed (expected) significance of 3.8σ(2.5σ) relative to the background-only hypothesis. Results are also obtained in three Higgs boson pT intervals and found to be compatible with standard model predictions, where the first uncertainty is statistical, the second is experimental systematic, and the third accounts for theory systematic.

View figure in article

Physics Subject Headings (PhySH)

Article Text

References (72)

  1. A. Vaswani et al., Attention is all you need, Advances in Neural Information Processing Systems 30 (NeurIPS 2017), edited by I. Guyon et al. (Curran Associates, Inc., Red Hook, 2017), p. 5998.
  2. ATLAS Collaboration, Transformer neural networks for identifying boosted Higgs bosons decaying into bb¯ and cc¯ in ATLAS, CERN, Report No. ATL-PHYS-PUB-2023-021, 2023, https://cds.cern.ch/record/2866601.
  3. ATLAS Collaboration, Transformer networks for constituent-based b-jet calibration with the ATLAS detector, CERN, Report No. ATL-PHYS-PUB-2024-015, 2024, https://cds.cern.ch/record/2905688.
  4. ATLAS Collaboration, A detailed map of Higgs boson interactions by the ATLAS experiment ten years after the discovery, Nature (London) 607, 52 (2022).
  5. CMS Collaboration, A portrait of the Higgs boson by the CMS experiment ten years after the discovery, Nature (London) 607, 60 (2022); CMS Collaboration623, E4 (2023).
  6. C. Grojean, E. Salvioni, M. Schlaffer, and A. Weiler, Very boosted Higgs in gluon fusion, J. High Energy Phys. 05 (2014) 022.
  7. S. Dawson, I. M. Lewis, and M. Zeng, Usefulness of effective field theory for boosted Higgs production, Phys. Rev. D 91, 074012 (2015).
  8. M. Grazzini, A. Ilnicka, M. Spira, and M. Wiesemann, Modeling BSM effects on the Higgs transverse-momentum spectrum in an EFT approach, J. High Energy Phys. 03 (2017) 115.
  9. A. Banfi, A. Bond, A. Martin, and V. Sanz, Digging for top squarks from Higgs data: From signal strengths to differential distributions, J. High Energy Phys. 11 (2018) 171.
  10. CMS Collaboration, Inclusive search for a highly boosted Higgs boson decaying to a bottom quark–antiquark pair, Phys. Rev. Lett. 120, 071802 (2018).
  11. ATLAS Collaboration, Measurement of the associated production of a Higgs boson decaying into b-quarks with a vector boson at high transverse momentum in pp collisions at s=13  TeV with the ATLAS detector, Phys. Lett. B 816, 136204 (2021).
  12. ATLAS Collaboration, Constraints on Higgs boson production with large transverse momentum using H→bb¯ decays in the ATLAS detector, Phys. Rev. D 105, 092003 (2022).
  13. ATLAS Collaboration, Study of high-transverse-momentum Higgs boson production in association with a vector boson in the qqbb final state with the ATLAS detector, Phys. Rev. Lett. 132, 131802 (2024).
  14. CMS Collaboration, Measurement of boosted Higgs bosons produced via vector boson fusion or gluon fusion in the H→bb¯ decay mode using LHC proton–proton collision data at s=13  TeV, J. High Energy Phys. 12 (2024) 035.
  15. ATLAS Collaboration, The ATLAS experiment at the CERN large hadron collider, J. Instrum. 3, S08003 (2008).
  16. ATLAS Collaboration, The ATLAS experiment at the CERN Large Hadron Collider: A description of the detector configuration for Run 3, J. Instrum. 19, P05063 (2024).
  17. ATLAS Collaboration, Luminosity determination in pp collisions at s=13  TeV using the ATLAS detector at the LHC, Eur. Phys. J. C 83, 982 (2023).
  18. ATLAS Collaboration, Preliminary analysis of the luminosity calibration for the ATLAS 13.6 TeV data recorded in 2023, CERN, Report No. ATL-DAPR-PUB-2024-001, 2024, https://cds.cern.ch/record/2900949.
  19. ATLAS Collaboration, Preliminary luminosity calibration of the ATLAS 13.6 TeV data recorded in 2024 and combination with the 2022 and 2023 measurements, CERN, Report No. ATL-DAPR-PUB-2025-001, 2025, https://cds.cern.ch/record/2948582.
  20. S. Alioli, P. Nason, C. Oleari, and E. Re, A general framework for implementing NLO calculations in shower Monte Carlo programs: The powheg box, J. High Energy Phys. 06 (2010) 043.
  21. P. Nason, A new method for combining NLO QCD with shower Monte Carlo algorithms, J. High Energy Phys. 11 (2004) 040.
  22. S. Frixione, P. Nason, and C. Oleari, Matching NLO QCD computations with parton shower simulations: The powheg method, J. High Energy Phys. 11 (2007) 070.
  23. T. Sjöstrand, S. Ask, J. R. Christiansen, R. Corke, N. Desai, P. Ilten, S. Mrenna, S. Prestel, C. O. Rasmussen, and P. Z. Skands, An introduction to pythia 8.2, Comput. Phys. Commun. 191, 159 (2015).
  24. K. Becker et al., Precise predictions for boosted Higgs production, SciPost Phys. Core 7, 001 (2024).
  25. E. Bothmann et al., Event generation with sherpa 2.2, SciPost Phys. 7, 034 (2019).
  26. S. Frixione, G. Ridolfi, and P. Nason, A positive-weight next-to-leading-order Monte Carlo for heavy flavour hadroproduction, J. High Energy Phys. 09 (2007) 126.
  27. S. Agostinelli et al., geant4—a simulation toolkit, Nucl. Instrum. Methods Phys. Res., Sect. A 506, 250 (2003).
  28. ATLAS Collaboration, The pythia8 A3 tune description of ATLAS minimum bias and inelastic measurements incorporating the Donnachie–Landshoff diffractive model, CERN, Report No. ATL-PHYS-PUB-2016-017, 2016, https://cds.cern.ch/record/2206965.
  29. ATLAS Collaboration, Modelling radiation damage to pixel sensors in the ATLAS detector, J. Instrum. 14, P06012 (2019).
  30. ATLAS Collaboration, Sensor response and radiation damage effects for 3D pixels in the ATLAS IBL detector, J. Instrum. 19, P10008 (2024).
  31. ATLAS Collaboration, Software performance of the ATLAS track reconstruction for LHC run 3, Comput. Software Big Sci. 8, 9 (2024).
  32. ATLAS Collaboration, Development of ATLAS primary vertex reconstruction for LHC run 3, CERN, Report No. ATL-PHYS-PUB-2019-015, 2019, https://cds.cern.ch/record/2670380.
  33. ATLAS Collaboration, Optimisation of large-radius jet reconstruction for the ATLAS detector in 13 TeV proton–proton collisions, Eur. Phys. J. C 81, 334 (2021).
  34. M. Cacciari, G. P. Salam, and G. Soyez, The anti-kt jet clustering algorithm, J. High Energy Phys. 04 (2008) 063.
  35. A. J. Larkoski, S. Marzani, G. Soyez, and J. Thaler, Soft drop, J. High Energy Phys. 05 (2014) 146.
  36. M. Dasgupta, A. Fregoso, S. Marzani, and G. P. Salam, Towards an understanding of jet substructure, J. High Energy Phys. 09 (2013) 029.
  37. P. Berta, M. Spousta, D. W. Miller, and R. Leitner, Particle-level pileup subtraction for jets and jet shapes, J. High Energy Phys. 06 (2014) 092.
  38. M. Cacciari, G. P. Salam, and G. Soyez, SoftKiller, a particle-level pileup removal method, Eur. Phys. J. C 75, 59 (2015).
  39. ATLAS Collaboration, Multijet simulation for 13 TeV ATLAS analyses, CERN, Report No. ATL-PHYS-PUB-2019-017, 2019, https://cds.cern.ch/record/2672252.
  40. ATLAS Collaboration, In situ calibration of large-radius jet energy and mass in 13 TeV proton–proton collisions with the ATLAS detector, Eur. Phys. J. C 79, 135 (2019).
  41. ATLAS Collaboration, Efficiency corrections for a tagger for boosted H→bb¯ decays in pp collisions at s=13  TeV with the ATLAS detector, CERN, Report No. ATL-PHYS-PUB-2021-035, 2021, https://cds.cern.ch/record/2777811.
  42. ATLAS Collaboration, Operation of the ATLAS trigger system in Run 2, J. Instrum. 15, P10004 (2020).
  43. ATLAS Collaboration, The ATLAS trigger system for LHC Run 3 and trigger performance in 2022, J. Instrum. 19, P06029 (2024).
  44. ATLAS Collaboration, Performance of the ATLAS muon triggers in Run 2, J. Instrum. 15, P09015 (2020).
  45. ATLAS Collaboration, Recommendations for the modeling of smooth backgrounds, CERN, Report No. ATL-PHYS-PUB-2020-028, 2020, https://cds.cern.ch/record/2743717.
  46. ATLAS Collaboration, Measurement of the top quark mass with the ATLAS detector using tt¯ events with a high transverse momentum top quark, Phys. Lett. B 867, 139608 (2025).
  47. W. Verkerke and D. Kirkby, The RooFit toolkit for data modeling, arXiv:physics/0306116.
  48. V. V. Gligorov, S. Hageboeck, T. Nanut, A. Sciandra, and D. Y. Tou, Avoiding biases in binned fits, J. Instrum. 16, T08004 (2021).
  49. ATLAS Collaboration, Evaluation of QCD uncertainties for Higgs boson production through gluon fusion and in association with two top quarks for simplified template cross-section measurements, CERN, Report No. ATL-PHYS-PUB-2023-031, 2023, https://cds.cern.ch/record/2878797.
  50. A. Gehrmann-De Ridder, T. Gehrmann, E. W. N. Glover, A. Huss, and T. A. Morgan, Precise QCD predictions for the production of a Z boson in association with a hadronic jet, Phys. Rev. Lett. 117, 022001 (2016).
  51. A. Gehrmann-De Ridder, T. Gehrmann, E. W. N. Glover, A. Huss, and T. A. Morgan, The NNLO QCD corrections to Z boson production at large transverse momentum, J. High Energy Phys. 07 (2016) 133.
  52. J. M. Lindert et al., Precise predictions for V+jets dark matter backgrounds, Eur. Phys. J. C 77, 829 (2017).
  53. A. Pinto, Z. Wu, F. Balli, N. Berger, M. Boonekamp, É. Chapon, T. Kawamoto, and B. Malaescu, Uncertainty components in profile likelihood fits, Eur. Phys. J. C 84, 593 (2024).
  54. D. de Florian et al., Handbook of LHC Higgs cross sections: 4. Deciphering the nature of the Higgs sector, CERN Yellow Rep. Monogr. (2017) [arXiv:1610.07922].
  55. J. R. Andersen et al., Les Houches 2015: Physics at TeV colliders standard model working group report, 9th Les Houches Workshop on Physics at TeV Colliders (PhysTeV 2015) Les Houches, France, 2015 (2016), arXiv:1605.04692.
  56. S. Amoroso et al., Les Houches 2019: Physics at TeV colliders: Standard model working group report, 11th Les Houches Workshop on Physics at TeV Colliders: PhysTeV Les Houches (2020), arXiv:2003.01700.
  57. ATLAS Collaboration, Measurement of the total and differential Higgs boson production cross-sections at s=13  TeV with the ATLAS detector by combining the H→ZZ*→4ℓ and H→γγ decay channels, J. High Energy Phys. 05 (2023) 028.
  58. A. Denner, S. Dittmaier, S. Kallweit, and A. Mück, hawk 2.0: A Monte Carlo program for Higgs production in vector-boson fusion and Higgs strahlung at hadron colliders, Comput. Phys. Commun. 195, 161 (2015).
  59. Evidence of Higgs boson inclusive production at high transverse momentum decaying to a pair of b-quarks with the ATLAS detector, HEPData (collection), 10.17182/hepdata.169580 (2026).
  60. ATLAS Collaboration, ATLAS computing acknowledgements, CERN, Report No. ATL-SOFT-PUB-2026-001, 2026, https://cds.cern.ch/record/2952666.
  61. K. Hamilton, P. Nason, and G. Zanderighi, Finite quark-mass effects in the NNLOPS POWHEG+MiNLO Higgs generator, J. High Energy Phys. 05 (2015) 140.
  62. K. Hamilton, P. Nason, and G. Zanderighi, MINLO: Multi-scale improved NLO, J. High Energy Phys. 10 (2012) 155.
  63. J. M. Campbell, R. Keith Ellis, R. Frederix, P. Nason, C. Oleari, and C. Williams, NLO Higgs boson production plus one and two jets using the powheg box, MadGraph4 and MCFM, J. High Energy Phys. 07 (2012) 092.
  64. K. Hamilton, P. Nason, C. Oleari, and G. Zanderighi, Merging H/W/Z+0 and 1 jet at NLO with no merging scale: A path to parton shower+NNLO matching, J. High Energy Phys. 05 (2013) 082.
  65. R. D. Ball et al. (NNPDF Collaboration), Parton distributions for the LHC run II, J. High Energy Phys. 04 (2015) 040.
  66. P. Nason and C. Oleari, NLO Higgs boson production via vector-boson fusion matched with shower in powheg, J. High Energy Phys. 02 (2010) 037.
  67. H. B. Hartanto, B. Jäger, L. Reina, and D. Wackeroth, Higgs boson production in association with top quarks in the powheg box, Phys. Rev. D 91, 094003 (2015).
  68. J. Butterworth et al., PDF4LHC recommendations for LHC Run II, J. Phys. G 43, 023001 (2016).
  69. B. Andersson, G. Gustafson, G. Ingelman, and T. Sjöstrand, Parton fragmentation and string dynamics, Phys. Rep. 97, 31 (1983).
  70. T. Sjöstrand, Jet fragmentation of multiparton configurations in a string framework, Nucl. Phys. B248, 469 (1984).
  71. J. Bellm et al., herwig 7.1 Release Note, arXiv:1705.06919.
  72. J.-C. Winter, F. Krauss, and G. Soff, A modified cluster-hadronisation model, Eur. Phys. J. C 36, 381 (2004).

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation