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

Search for γH production and constraints on the Yukawa couplings of light quarks to the Higgs boson

V. Chekhovsky1, A. Hayrapetyan1, V. Makarenko1, A. Tumasyan1,b, W. Adam2, J. W. Andrejkovic2, L. Benato2, T. Bergauer2, S. Chatterjee2 et al. (CMS Collaboration)

S. Chatterjee2, K. Damanakis2, M. Dragicevic2, P. S. Hussain2, M. Jeitler2,c, N. Krammer2, A. Li2, D. Liko2, I. Mikulec2, J. Schieck2,c, R. Schöfbeck2,c, D. Schwarz2, M. Sonawane2, W. Waltenberger2, C.-E. Wulz2,c, T. Janssen3, H. Kwon3, T. Van Laer3, P. Van Mechelen3, N. Breugelmans4, J. D’Hondt4, S. Dansana4, A. De Moor4, M. Delcourt4, F. Heyen4, Y. Hong4, S. Lowette4, I. Makarenko4, D. Müller4, S. Tavernier4, M. Tytgat4,d, G. P. Van Onsem4, S. Van Putte4, D. Vannerom4, B. Bilin5, B. Clerbaux5, A. K. Das5, I. De Bruyn5, G. De Lentdecker5, H. Evard5, L. Favart5, P. Gianneios5, A. Khalilzadeh5, F. A. Khan5, K. Lee5, A. Malara5, M. A. Shahzad5, L. Thomas5, M. Vanden Bemden5, C. Vander Velde5, P. Vanlaer5, M. De Coen6, D. Dobur6, G. Gokbulut6, J. Knolle6, L. Lambrecht6, D. Marckx6, K. Skovpen6, N. Van Den Bossche6, J. van der Linden6, J. Vandenbroeck6, L. Wezenbeek6, S. Bein7, A. Benecke7, A. Bethani7, G. Bruno7, C. Caputo7, J. De Favereau De Jeneret7, C. Delaere7, I. S. Donertas7, A. Giammanco7, A. O. Guzel7, Sa. Jain7, V. Lemaitre7, J. Lidrych7, P. Mastrapasqua7, T. T. Tran7, S. Turkcapar7, G. A. Alves8, E. Coelho8, G. Correia Silva8, C. Hensel8, T. Menezes De Oliveira8, C. Mora Herrera8,e, P. Rebello Teles8, M. Soeiro8, E. J. Tonelli Manganote8,f, A. Vilela Pereira8,e, W. L. Aldá Júnior9, M. Barroso Ferreira Filho9, H. Brandao Malbouisson9, W. Carvalho9, J. Chinellato9,g, E. M. Da Costa9, G. G. Da Silveira9,h, D. De Jesus Damiao9, S. Fonseca De Souza9, R. Gomes De Souza9, T. Laux Kuhn9,h, M. Macedo9, J. Martins9, K. Mota Amarilo9, L. Mundim9, H. Nogima9, J. P. Pinheiro9, A. Santoro9, A. Sznajder9, M. Thiel9, C. A. Bernardes10,h, L. Calligaris10, T. R. Fernandez Perez Tomei10, E. M. Gregores10, I. Maietto Silverio10, P. G. Mercadante10, S. F. Novaes10, B. Orzari10, Sandra S. Padula10, V. Scheurer10, A. Aleksandrov11, G. Antchev11, R. Hadjiiska11, P. Iaydjiev11, M. Misheva11, M. Shopova11, G. Sultanov11, A. Dimitrov12, L. Litov12, B. Pavlov12, P. Petkov12, A. Petrov12, E. Shumka12, S. Keshri13, D. Laroze13, S. Thakur13, T. Cheng14, T. Javaid14, L. Yuan14, Z. Hu15, Z. Liang15, J. Liu15, G. M. Chen16,i, H. S. Chen16,i, M. Chen16,i, F. Iemmi16, C. H. Jiang16, A. Kapoor16,j, H. Liao16, Z.-A. Liu16,k, R. Sharma16,l, J. N. Song16,k, J. Tao16, C. Wang16,i, J. Wang16, Z. Wang16,i, H. Zhang16, J. Zhao16, A. Agapitos17, Y. Ban17, A. Carvalho Antunes De Oliveira17, S. Deng17, B. Guo17, C. Jiang17, A. Levin17, C. Li17, Q. Li17, Y. Mao17, S. Qian17, S. J. Qian17, X. Qin17, X. Sun17, D. Wang17, H. Yang17, Y. Zhao17, C. Zhou17, S. Yang18, Z. You19, K. Jaffel20, N. Lu20, G. Bauer21,m, B. Li21,n, H. Wang21, K. Yi21,o, J. Zhang21, Y. Li22, Z. Lin23, C. Lu23, M. Xiao23, C. Avila24, D. A. Barbosa Trujillo24, A. Cabrera24, C. Florez24, J. Fraga24, J. A. Reyes Vega24, J. Jaramillo25, C. Rendón25, M. Rodriguez25, A. A. Ruales Barbosa25, J. D. Ruiz Alvarez25, D. Giljanovic26, N. Godinovic26, D. Lelas26, A. Sculac26, M. Kovac27, A. Petkovic27, T. Sculac27, P. Bargassa28, V. Brigljevic28, B. K. Chitroda28, D. Ferencek28, K. Jakovcic28, A. Starodumov28,p, T. Susa28, A. Attikis29, K. Christoforou29, A. Hadjiagapiou29, C. Leonidou29, J. Mousa29, C. Nicolaou29, L. Paizanos29, F. Ptochos29, P. A. Razis29, H. Rykaczewski29, H. Saka29, A. Stepennov29, M. Finger30, M. Finger, Jr.30, A. Kveton30, E. Carrera Jarrin31, B. El-mahdy32, S. Khalil32,q, E. Salama32,r,s, M. Abdullah Al-Mashad33, M. A. Mahmoud33, K. Ehataht34, M. Kadastik34, T. Lange34, C. Nielsen34, J. Pata34, M. Raidal34, L. Tani34, C. Veelken34, K. Osterberg35, M. Voutilainen35, N. Bin Norjoharuddeen36, E. Brücken36, F. Garcia36, P. Inkaew36, K. T. S. Kallonen36, T. Lampén36, K. Lassila-Perini36, S. Lehti36, T. Lindén36, M. Myllymäki36, M. m. Rantanen36, J. Tuominiemi36, H. Kirschenmann37, P. Luukka37, H. Petrow37, M. Besancon38, F. Couderc38, M. Dejardin38, D. Denegri38, J. L. Faure38, F. Ferri38, S. Ganjour38, P. Gras38, G. Hamel de Monchenault38, M. Kumar38, V. Lohezic38, J. Malcles38, F. Orlandi38, L. Portales38, A. Rosowsky38, M. Ö. Sahin38, A. Savoy-Navarro38,t, P. Simkina38, M. Titov38, M. Tornago38, F. Beaudette39, G. Boldrini39, P. Busson39, A. Cappati39, C. Charlot39, M. Chiusi39, T. D. Cuisset39, F. Damas39, O. Davignon39, A. De Wit39, I. T. Ehle39, B. A. Fontana Santos Alves39, S. Ghosh39, A. Gilbert39, R. Granier de Cassagnac39, A. Hakimi39, B. Harikrishnan39, L. Kalipoliti39, G. Liu39, M. Nguyen39, S. Obraztsov39, C. Ochando39, R. Salerno39, J. B. Sauvan39, Y. Sirois39, G. Sokmen39, L. Urda Gómez39, E. Vernazza39, A. Zabi39, A. Zghiche39, J.-L. Agram40,u, J. Andrea40, D. Apparu40, D. Bloch40, J.-M. Brom40, E. C. Chabert40, C. Collard40, S. Falke40, U. Goerlach40, R. Haeberle40, A.-C. Le Bihan40, M. Meena40, O. Poncet40, G. Saha40, M. A. Sessini40, P. Van Hove40, P. Vaucelle40, A. Di Florio41, D. Amram42, S. Beauceron42, B. Blancon42, G. Boudoul42, N. Chanon42, D. Contardo42, P. Depasse42, C. Dozen42,v, H. El Mamouni42, J. Fay42, S. Gascon42, M. Gouzevitch42, C. Greenberg42, G. Grenier42, B. Ille42, E. Jourd`huy42, M. Lethuillier42, L. Mirabito42, S. Perries42, A. Purohit42, M. Vander Donckt42, P. Verdier42, J. Xiao42, I. Lomidze43, T. Toriashvili43,w, Z. Tsamalaidze43,p, V. Botta44, S. Consuegra Rodríguez44, L. Feld44, K. Klein44, M. Lipinski44, D. Meuser44, A. Pauls44, D. Pérez Adán44, N. Röwert44, M. Teroerde44, S. Diekmann45, A. Dodonova45, N. Eich45, D. Eliseev45, F. Engelke45, J. Erdmann45, M. Erdmann45, B. Fischer45, T. Hebbeker45, K. Hoepfner45, F. Ivone45, A. Jung45, M. y. Lee45, F. Mausolf45, M. Merschmeyer45, A. Meyer45, S. Mukherjee45, D. Noll45, F. Nowotny45, A. Pozdnyakov45, Y. Rath45, W. Redjeb45, F. Rehm45, H. Reithler45, V. Sarkisovi45, A. Schmidt45, C. Seth45, A. Sharma45, J. L. Spah45, F. Torres Da Silva De Araujo45,x, S. Wiedenbeck45, S. Zaleski45, C. Dziwok46, G. Flügge46, T. Kress46, A. Nowack46, O. Pooth46, A. Stahl46, T. Ziemons46, A. Zotz46, H. Aarup Petersen47, M. Aldaya Martin47, J. Alimena47, S. Amoroso47, Y. An47, J. Bach47, S. Baxter47, M. Bayatmakou47, H. Becerril Gonzalez47, O. Behnke47, A. Belvedere47, F. Blekman47,y, K. Borras47,z, A. Campbell47, A. Cardini47, F. Colombina47, M. De Silva47, G. Eckerlin47, D. Eckstein47, L. I. Estevez Banos47, E. Gallo47,y, A. Geiser47, V. Guglielmi47, M. Guthoff47, A. Hinzmann47, L. Jeppe47, B. Kaech47, M. Kasemann47, C. Kleinwort47, R. Kogler47, M. Komm47, D. Krücker47, W. Lange47, D. Leyva Pernia47, K. Lipka47,aa, W. Lohmann47,bb, F. Lorkowski47, R. Mankel47, I.-A. Melzer-Pellmann47, M. Mendizabal Morentin47, A. B. Meyer47, G. Milella47, K. Moral Figueroa47, A. Mussgiller47, L. P. Nair47, J. Niedziela47, A. Nürnberg47, J. Park47, E. Ranken47, A. Raspereza47, D. Rastorguev47, J. Rübenach47, L. Rygaard47, M. Scham47,z,cc, S. Schnake47,z, P. Schütze47, C. Schwanenberger47,y, D. Selivanova47, K. Sharko47, M. Shchedrolosiev47, D. Stafford47, F. Vazzoler47, A. Ventura Barroso47, R. Walsh47, D. Wang47, Q. Wang47, K. Wichmann47, L. Wiens47,z, C. Wissing47, Y. Yang47, S. Zakharov47, A. Zimermmane Castro Santos47, A. Albrecht48, S. Albrecht48, M. Antonello48, S. Bollweg48, M. Bonanomi48, P. Connor48, K. El Morabit48, Y. Fischer48, E. Garutti48, A. Grohsjean48, J. Haller48, D. Hundhausen48, H. R. Jabusch48, G. Kasieczka48, P. Keicher48, R. Klanner48, W. Korcari48, T. Kramer48, C. c. Kuo48, V. Kutzner48, F. Labe48, J. Lange48, A. Lobanov48, C. Matthies48, L. Moureaux48, M. Mrowietz48, A. Nigamova48, Y. Nissan48, A. Paasch48, K. J. Pena Rodriguez48, T. Quadfasel48, B. Raciti48, M. Rieger48, D. Savoiu48, J. Schindler48, P. Schleper48, M. Schröder48, J. Schwandt48, M. Sommerhalder48, H. Stadie48, G. Steinbrück48, A. Tews48, B. Wiederspan48, M. Wolf48, S. Brommer49, E. Butz49, T. Chwalek49, A. Dierlamm49, G. G. Dincer49, U. Elicabuk49, N. Faltermann49, M. Giffels49, A. Gottmann49, F. Hartmann49,dd, R. Hofsaess49, M. Horzela49, U. Husemann49, J. Kieseler49, M. Klute49, O. Lavoryk49, J. M. Lawhorn49, M. Link49, A. Lintuluoto49, S. Maier49, S. Mitra49, M. Mormile49, Th. Müller49, M. Neukum49, M. Oh49, E. Pfeffer49, M. Presilla49, G. Quast49, K. Rabbertz49, B. Regnery49, R. Schmieder49, N. Shadskiy49, I. Shvetsov49, H. J. Simonis49, L. Sowa49, L. Stockmeier49, K. Tauqeer49, M. Toms49, B. Topko49, N. Trevisani49, T. Voigtländer49, R. F. Von Cube49, J. Von Den Driesch49, M. Wassmer49, S. Wieland49, F. Wittig49, R. Wolf49, X. Zuo49, G. Anagnostou50, G. Daskalakis50, A. Kyriakis50, A. Papadopoulos50,dd, A. Stakia50, G. Melachroinos51, Z. Painesis51, I. Paraskevas51, N. Saoulidou51, K. Theofilatos51, E. Tziaferi51, K. Vellidis51, I. Zisopoulos51, G. Bakas52, T. Chatzistavrou52, G. Karapostoli52, K. Kousouris52, I. Papakrivopoulos52, E. Siamarkou52, G. Tsipolitis52, A. Zacharopoulou52, I. Bestintzanos53, I. Evangelou53, C. Foudas53, C. Kamtsikis53, P. Katsoulis53, P. Kokkas53, P. G. Kosmoglou Kioseoglou53, N. Manthos53, I. Papadopoulos53, J. Strologas53, C. Hajdu54, D. Horvath54,ee,ff, K. Márton54, A. J. Rádl54,gg, F. Sikler54, V. Veszpremi54, M. Csanád55, K. Farkas55, A. Fehérkuti55,hh, M. M. A. Gadallah55,ii, Á. Kadlecsik55, P. Major55, G. Pásztor55, G. I. Veres55, B. Ujvari56, G. Zilizi56, G. Bencze57, S. Czellar57, J. Molnar57, Z. Szillasi57, T. Csorgo58,hh, F. Nemes58,hh, T. Novak58, S. Bansal59, S. B. Beri59, V. Bhatnagar59, G. Chaudhary59, S. Chauhan59, N. Dhingra59,jj, A. Kaur59, A. Kaur59, H. Kaur59, M. Kaur59, S. Kumar59, T. Sheokand59, J. B. Singh59, A. Singla59, A. Bhardwaj60, A. Chhetri60, B. C. Choudhary60, A. Kumar60, A. Kumar60, M. Naimuddin60, K. Ranjan60, M. K. Saini60, S. Saumya60, S. Baradia61, S. Barman61,kk, S. Bhattacharya61, S. Das Gupta61, S. Dutta61, S. Dutta61, S. Sarkar61, M. M. Ameen62, P. K. Behera62, S. C. Behera62, S. Chatterjee62, G. Dash62, P. Jana62, P. Kalbhor62, S. Kamble62, J. R. Komaragiri62,ll, D. Kumar62,ll, T. Mishra62, B. Parida62,mm, P. R. Pujahari62, N. R. Saha62, A. Sharma62, A. K. Sikdar62, R. K. Singh62, P. Verma62, S. Verma62, A. Vijay62, S. Dugad63, G. B. Mohanty63, M. Shelake63, P. Suryadevara63, A. Bala64, S. Banerjee64, S. Bhowmik64, R. M. Chatterjee64, M. Guchait64, Sh. Jain64, A. Jaiswal64, B. M. Joshi64, S. Kumar64, G. Majumder64, K. Mazumdar64, S. Parolia64, A. Thachayath64, S. Bahinipati65,nn, C. Kar65, D. Maity65,oo, P. Mal65, K. Naskar65,oo, A. Nayak65,oo, S. Nayak65, K. Pal65, P. Sadangi65, S. K. Swain65, S. Varghese65,oo, D. Vats65,oo, S. Acharya66,pp, A. Alpana66, S. Dube66, B. Gomber66,pp, P. Hazarika66, B. Kansal66, A. Laha66, B. Sahu66,pp, S. Sharma66, K. Y. Vaish66, H. Bakhshiansohi67,qq, A. Jafari67,rr, M. Zeinali67,ss, S. Bashiri68, S. Chenarani68,tt, S. M. Etesami68, Y. Hosseini68, M. Khakzad68, E. Khazaie68, M. Mohammadi Najafabadi68, S. Tizchang68,uu, M. Felcini69, M. Grunewald69, M. Abbrescia70a,70b, A. Colaleo70a,70b, D. Creanza70a,70c, B. D’Anzi70a,70b, N. De Filippis70a,70c, M. De Palma70a,70b, W. Elmetenawee70a,70b,vv, N. Ferrara70a,70b, L. Fiore70a, G. Iaselli70a,70c, L. Longo70a, M. Louka70a,70b, G. Maggi70a,70c, M. Maggi70a, I. Margjeka70a, V. Mastrapasqua70a,70b, S. My70a,70b, S. Nuzzo70a,70b, A. Pellecchia70a,70b, A. Pompili70a,70b, G. Pugliese70a,70c, R. Radogna70a,70b, D. Ramos70a, A. Ranieri70a, L. Silvestris70a, F. M. Simone70a,70c, Ü. Sözbilir70a, A. Stamerra70a,70b, D. Troiano70a,70b, R. Venditti70a,70b, P. Verwilligen70a, A. Zaza70a,70b, G. Abbiendi71a, C. Battilana71a,71b, D. Bonacorsi71a,71b, P. Capiluppi71a,71b, A. Castro71a,71b,a, F. R. Cavallo71a, M. Cuffiani71a,71b, G. M. Dallavalle71a, T. Diotalevi71a,71b, F. Fabbri71a, A. Fanfani71a,71b, D. Fasanella71a, P. Giacomelli71a, L. Giommi71a,71b, C. Grandi71a, L. Guiducci71a,71b, S. Lo Meo71a,ww, M. Lorusso71a,71b, L. Lunerti71a, S. Marcellini71a, G. Masetti71a, F. L. Navarria71a,71b, G. Paggi71a,71b, A. Perrotta71a, F. Primavera71a,71b, A. M. Rossi71a,71b, S. Rossi Tisbeni71a,71b, T. Rovelli71a,71b, G. P. Siroli71a,71b, S. Costa72a,72b,xx, A. Di Mattia72a, A. Lapertosa72a, R. Potenza72a,72b, A. Tricomi72a,72b,xx, P. Assiouras73a, G. Barbagli73a, G. Bardelli73a,73b, B. Camaiani73a,73b, A. Cassese73a, R. Ceccarelli73a, V. Ciulli73a,73b, C. Civinini73a, R. D’Alessandro73a,73b, E. Focardi73a,73b, T. Kello73a, G. Latino73a,73b, P. Lenzi73a,73b, M. Lizzo73a, M. Meschini73a, S. Paoletti73a, A. Papanastassiou73a,73b, G. Sguazzoni73a, L. Viliani73a, L. Benussi74, S. Bianco74, S. Meola74,yy, D. Piccolo74, M. Alves Gallo Pereira75a, F. Ferro75a, E. Robutti75a, S. Tosi75a,75b, A. Benaglia76a, F. Brivio76a, F. Cetorelli76a,76b, F. De Guio76a,76b, M. E. Dinardo76a,76b, P. Dini76a, S. Gennai76a, R. Gerosa76a,76b, A. Ghezzi76a,76b, P. Govoni76a,76b, L. Guzzi76a, G. Lavizzari76a,76b, M. T. Lucchini76a,76b, M. Malberti76a, S. Malvezzi76a, A. Massironi76a, D. Menasce76a, L. Moroni76a, M. Paganoni76a,76b, S. Palluotto76a,76b, D. Pedrini76a, A. Perego76a,76b, B. S. Pinolini76a, G. Pizzati76a,76b, S. Ragazzi76a,76b, T. Tabarelli de Fatis76a,76b, S. Buontempo77a, A. Cagnotta77a,77b, F. Carnevali77a,77b, N. Cavallo77a,77c, F. Fabozzi77a,77c, A. O. M. Iorio77a,77b, L. Lista77a,77b,zz, P. Paolucci77a,dd, B. Rossi77a, R. Ardino78a, P. Azzi78a, N. Bacchetta78a,aaa, D. Bisello78a,78b, P. Bortignon78a, G. Bortolato78a,78b, A. C. M. Bulla78a, R. Carlin78a,78b, P. Checchia78a, T. Dorigo78a, F. Gasparini78a,78b, U. Gasparini78a,78b, S. Giorgetti78a, E. Lusiani78a, M. Margoni78a,78b, M. Michelotto78a, M. Migliorini78a,78b, J. Pazzini78a,78b, P. Ronchese78a,78b, R. Rossin78a,78b, F. Simonetto78a,78b, M. Tosi78a,78b, A. Triossi78a,78b, S. Ventura78a, M. Zanetti78a,78b, P. Zotto78a,78b, A. Zucchetta78a,78b, G. Zumerle78a,78b, A. Braghieri79a, S. Calzaferri79a, D. Fiorina79a, P. Montagna79a,79b, V. Re79a, C. Riccardi79a,79b, P. Salvini79a, I. Vai79a,79b, P. Vitulo79a,79b, S. Ajmal80a,80b, M. E. Ascioti80a,80b, G. M. Bilei80a, C. Carrivale80a,80b, D. Ciangottini80a,80b, L. Fanò80a,80b, V. Mariani80a,80b, M. Menichelli80a, F. Moscatelli80a,bbb, A. Rossi80a,80b, A. Santocchia80a,80b, D. Spiga80a, T. Tedeschi80a,80b, C. Aimè81a, C. A. Alexe81a,81c, P. Asenov81a,81b, P. Azzurri81a, G. Bagliesi81a, R. Bhattacharya81a, L. Bianchini81a,81b, T. Boccali81a, E. Bossini81a, D. Bruschini81a,81c, R. Castaldi81a, M. A. Ciocci81a,81b, M. Cipriani81a,81b, V. D’Amante81a,81d, R. Dell’Orso81a, S. Donato81a, A. Giassi81a, F. Ligabue81a,81c, A. C. Marini81a, D. Matos Figueiredo81a, A. Messineo81a,81b, S. Mishra81a, V. K. Muraleedharan Nair Bindhu81a,81b,oo, M. Musich81a,81b, S. Nandan81a, F. Palla81a, A. Rizzi81a,81b, G. Rolandi81a,81c, S. Roy Chowdhury81a, T. Sarkar81a, A. Scribano81a, P. Spagnolo81a, R. Tenchini81a, G. Tonelli81a,81b, N. Turini81a,81d, F. Vaselli81a,81c, A. Venturi81a, P. G. Verdini81a, P. Barria82a, C. Basile82a,82b, F. Cavallari82a, L. Cunqueiro Mendez82a,82b, D. Del Re82a,82b, E. Di Marco82a,82b, M. Diemoz82a, F. Errico82a,82b, R. Gargiulo82a,82b, E. Longo82a,82b, L. Martikainen82a,82b, J. Mijuskovic82a,82b, G. Organtini82a,82b, F. Pandolfi82a, R. Paramatti82a,82b, C. Quaranta82a,82b, S. Rahatlou82a,82b, C. Rovelli82a, F. Santanastasio82a,82b, L. Soffi82a, V. Vladimirov82a,82b, N. Amapane83a,83b, R. Arcidiacono83a,83c, S. Argiro83a,83b, M. Arneodo83a,83c, N. Bartosik83a, R. Bellan83a,83b, C. Biino83a, C. Borca83a,83b, N. Cartiglia83a, M. Costa83a,83b, R. Covarelli83a,83b, N. Demaria83a, L. Finco83a, M. Grippo83a,83b, B. Kiani83a,83b, F. Legger83a, F. Luongo83a,83b, C. Mariotti83a, L. Markovic83a,83b, S. Maselli83a, A. Mecca83a,83b, L. Menzio83a,83b, P. Meridiani83a, E. Migliore83a,83b, M. Monteno83a, R. Mulargia83a, M. M. Obertino83a,83b, G. Ortona83a, L. Pacher83a,83b, N. Pastrone83a, M. Pelliccioni83a, M. Ruspa83a,83c, F. Siviero83a,83b, V. Sola83a,83b, A. Solano83a,83b, A. Staiano83a, C. Tarricone83a,83b, D. Trocino83a, G. Umoret83a,83b, R. White83a,83b, J. Babbar84a,84b, S. Belforte84a, V. Candelise84a,84b, M. Casarsa84a, F. Cossutti84a, K. De Leo84a, G. Della Ricca84a,84b, S. Dogra85, J. Hong85, J. Kim85, D. Lee85, H. Lee85, S. W. Lee85, C. S. Moon85, Y. D. Oh85, M. S. Ryu85, S. Sekmen85, B. Tae85, Y. C. Yang85, M. S. Kim86, G. Bak87, P. Gwak87, H. Kim87, D. H. Moon87, E. Asilar88, J. Choi88, D. Kim88, T. J. Kim88, J. A. Merlin88, Y. Ryou88, S. Choi89, S. Han89, B. Hong89, K. Lee89, K. S. Lee89, S. Lee89, J. Yoo89, J. Goh90, S. Yang90, Y. Kang91, H. S. Kim91, Y. Kim91, S. Lee91, J. Almond92, J. H. Bhyun92, J. Choi92, J. Choi92, W. Jun92, J. Kim92, Y. W. Kim92, S. Ko92, H. Lee92, J. Lee92, J. Lee92, B. H. Oh92, S. B. Oh92, H. Seo92, U. K. Yang92, I. Yoon92, W. Jang93, D. Y. Kang93, S. Kim93, B. Ko93, J. S. H. Lee93, Y. Lee93, I. C. Park93, Y. Roh93, I. J. Watson93, S. Ha94, K. Hwang94, B. Kim94, H. D. Yoo94, M. Choi95, M. R. Kim95, H. Lee95, Y. Lee95, I. Yu95, T. Beyrouthy96, Y. Gharbia96, F. Alazemi97, K. Dreimanis98, A. Gaile98, C. Munoz Diaz98, D. Osite98, G. Pikurs98, A. Potrebko98, M. Seidel98, D. Sidiropoulos Kontos98, N. R. Strautnieks99, M. Ambrozas100, A. Juodagalvis100, A. Rinkevicius100, G. Tamulaitis100, I. Yusuff101,ccc, Z. Zolkapli101, J. F. Benitez102, A. Castaneda Hernandez102, H. A. Encinas Acosta102, L. G. Gallegos Maríñez102, M. León Coello102, J. A. Murillo Quijada102, A. Sehrawat102, L. Valencia Palomo102, G. Ayala103, H. Castilla-Valdez103, H. Crotte Ledesma103, E. De La Cruz-Burelo103, I. Heredia-De La Cruz103,ddd, R. Lopez-Fernandez103, J. Mejia Guisao103, C. A. Mondragon Herrera103, A. Sánchez Hernández103, C. Oropeza Barrera104, D. L. Ramirez Guadarrama104, M. Ramírez García104, I. Bautista105, F. E. Neri Huerta105, I. Pedraza105, H. A. Salazar Ibarguen105, C. Uribe Estrada105, I. Bubanja106, N. Raicevic106, P. H. Butler107, A. Ahmad108, M. I. Asghar108, A. Awais108, M. I. M. Awan108, H. R. Hoorani108, W. A. Khan108, V. Avati109, A. Bellora109, L. Forthomme109, L. Grzanka109, M. Malawski109, K. Piotrzkowski109, H. Bialkowska110, M. Bluj110, M. Górski110, M. Kazana110, M. Szleper110, P. Zalewski110, K. Bunkowski111, K. Doroba111, A. Kalinowski111, M. Konecki111, J. Krolikowski111, A. Muhammad111, P. Fokow112, K. Pozniak112, W. Zabolotny112, M. Araujo113, D. Bastos113, C. Beirão Da Cruz E Silva113, A. Boletti113, M. Bozzo113, T. Camporesi113, G. Da Molin113, P. Faccioli113, M. Gallinaro113, J. Hollar113, N. Leonardo113, G. B. Marozzo113, A. Petrilli113, M. Pisano113, J. Seixas113, J. Varela113, J. W. Wulff113, P. Adzic114, P. Milenovic114, D. Devetak115, M. Dordevic115, J. Milosevic115, L. Nadderd115, V. Rekovic115, M. Stojanovic115, J. Alcaraz Maestre116, Cristina F. Bedoya116, J. A. Brochero Cifuentes116, Oliver M. Carretero116, M. Cepeda116, M. Cerrada116, N. Colino116, B. De La Cruz116, A. Delgado Peris116, A. Escalante Del Valle116, D. Fernández Del Val116, J. P. Fernández Ramos116, J. Flix116, M. C. Fouz116, O. Gonzalez Lopez116, S. Goy Lopez116, J. M. Hernandez116, M. I. Josa116, J. Llorente Merino116, C. Martin Perez116, E. Martin Viscasillas116, D. Moran116, C. M. Morcillo Perez116, Á. Navarro Tobar116, C. Perez Dengra116, A. Pérez-Calero Yzquierdo116, J. Puerta Pelayo116, I. Redondo116, J. Sastre116, J. Vazquez Escobar116, J. F. de Trocóniz117, B. Alvarez Gonzalez118, J. Cuevas118, J. Fernandez Menendez118, S. Folgueras118, I. Gonzalez Caballero118, P. Leguina118, E. Palencia Cortezon118, J. Prado Pico118, V. Rodríguez Bouza118, A. Soto Rodríguez118, A. Trapote118, C. Vico Villalba118, P. Vischia118, S. Blanco Fernández119, I. J. Cabrillo119, A. Calderon119, J. Duarte Campderros119, M. Fernandez119, G. Gomez119, C. Lasaosa García119, R. Lopez Ruiz119, C. Martinez Rivero119, P. Martinez Ruiz del Arbol119, F. Matorras119, P. Matorras Cuevas119, E. Navarrete Ramos119, J. Piedra Gomez119, L. Scodellaro119, I. Vila119, J. M. Vizan Garcia119, B. Kailasapathy120,eee, D. D. C. Wickramarathna120, W. G. D. Dharmaratna121,fff, K. Liyanage121, N. Perera121, D. Abbaneo122, C. Amendola122, E. Auffray122, G. Auzinger122, J. Baechler122, D. Barney122, A. Bermúdez Martínez122, M. Bianco122, A. A. Bin Anuar122, A. Bocci122, L. Borgonovi122, C. Botta122, A. Bragagnolo122, E. Brondolin122, C. E. Brown122, C. Caillol122, G. Cerminara122, N. Chernyavskaya122, D. d’Enterria122, A. Dabrowski122, A. David122, A. De Roeck122, M. M. Defranchis122, M. Deile122, M. Dobson122, G. Franzoni122, W. Funk122, S. Giani122, D. Gigi122, K. Gill122, F. Glege122, M. Glowacki122, J. Hegeman122, J. K. Heikkilä122, B. Huber122, V. Innocente122, T. James122, P. Janot122, O. Kaluzinska122, O. Karacheban122,bb, G. Karathanasis122, S. Laurila122, P. Lecoq122, E. Leutgeb122, C. Lourenço122, M. Magherini122, L. Malgeri122, M. Mannelli122, M. Matthewman122, A. Mehta122, F. Meijers122, S. Mersi122, E. Meschi122, V. Milosevic122, F. Monti122, F. Moortgat122, M. Mulders122, I. Neutelings122, S. Orfanelli122, F. Pantaleo122, G. Petrucciani122, A. Pfeiffer122, M. Pierini122, M. Pitt122, H. Qu122, D. Rabady122, B. Ribeiro Lopes122, F. Riti122, M. Rovere122, H. Sakulin122, R. Salvatico122, S. Sanchez Cruz122, S. Scarfi122, C. Schwick122, M. Selvaggi122, A. Sharma122, K. Shchelina122, P. Silva122, P. Sphicas122,ggg, A. G. Stahl Leiton122, A. Steen122, S. Summers122, D. Treille122, P. Tropea122, D. Walter122, J. Wanczyk122,hhh, J. Wang122, S. Wuchterl122, P. Zehetner122, P. Zejdl122, W. D. Zeuner122, T. Bevilacqua123,iii, L. Caminada123,iii, A. Ebrahimi123, W. Erdmann123, R. Horisberger123, Q. Ingram123, H. C. Kaestli123, D. Kotlinski123, C. Lange123, M. Missiroli123,iii, L. Noehte123,iii, T. Rohe123, A. Samalan123, T. K. Aarrestad124, M. Backhaus124, G. Bonomelli124, A. Calandri124, C. Cazzaniga124, K. Datta124, P. De Bryas Dexmiers D‘archiac124,hhh, A. De Cosa124, G. Dissertori124, M. Dittmar124, M. Donegà124, F. Eble124, M. Galli124, K. Gedia124, F. Glessgen124, C. Grab124, N. Härringer124, T. G. Harte124, D. Hits124, W. Lustermann124, A.-M. Lyon124, R. A. Manzoni124, M. Marchegiani124, L. Marchese124, A. Mascellani124,hhh, F. Nessi-Tedaldi124, F. Pauss124, V. Perovic124, S. Pigazzini124, B. Ristic124, R. Seidita124, J. Steggemann124,hhh, A. Tarabini124, D. Valsecchi124, R. Wallny124, C. Amsler125,jjj, P. Bärtschi125, M. F. Canelli125, K. Cormier125, M. Huwiler125, W. Jin125, A. Jofrehei125, B. Kilminster125, S. Leontsinis125, S. P. Liechti125, A. Macchiolo125, P. Meiring125, F. Meng125, J. Motta125, A. Reimers125, P. Robmann125, M. Senger125, E. Shokr125, F. Stäger125, R. Tramontano125, C. Adloff126,kkk, D. Bhowmik126, C. M. Kuo126, W. Lin126, P. K. Rout126, P. C. Tiwari126,ll, L. Ceard127, K. F. Chen127, Z. g. Chen127, A. De Iorio127, W.-S. Hou127, T. h. Hsu127, Y. w. Kao127, S. Karmakar127, G. Kole127, Y. y. Li127, R.-S. Lu127, E. Paganis127, X. f. Su127, J. Thomas-Wilsker127, L. s. Tsai127, D. Tsionou127, H. y. Wu127, E. Yazgan127, C. Asawatangtrakuldee128, N. Srimanobhas128, V. Wachirapusitanand128, Y. Maghrbi129, D. Agyel130, F. Boran130, F. Dolek130, I. Dumanoglu130,lll, E. Eskut130, Y. Guler130,mmm, E. Gurpinar Guler130,mmm, C. Isik130, O. Kara130, A. Kayis Topaksu130, Y. Komurcu130, G. Onengut130, K. Ozdemir130,nnn, A. Polatoz130, B. Tali130,ooo, U. G. Tok130, E. Uslan130, I. S. Zorbakir130, M. Yalvac131,ppp, B. Akgun132, I. O. Atakisi132, E. Gülmez132, M. Kaya132,qqq, O. Kaya132,rrr, S. Tekten132,sss, A. Cakir133, K. Cankocak133,lll,ttt, S. Sen133,uuu, O. Aydilek134,vvv, B. Hacisahinoglu134, I. Hos134,www, B. Kaynak134, S. Ozkorucuklu134, O. Potok134, H. Sert134, C. Simsek134, C. Zorbilmez134, S. Cerci135, B. Isildak135,xxx, D. Sunar Cerci135, T. Yetkin135, A. Boyaryntsev136, B. Grynyov136, L. Levchuk137, D. Anthony138, J. J. Brooke138, A. Bundock138, F. Bury138, E. Clement138, D. Cussans138, H. Flacher138, J. Goldstein138, H. F. Heath138, M.-L. Holmberg138, L. Kreczko138, S. Paramesvaran138, L. Robertshaw138, V. J. Smith138, K. Walkingshaw Pass138, A. H. Ball139, K. W. Bell139, A. Belyaev139,yyy, C. Brew139, R. M. Brown139, D. J. A. Cockerill139, C. Cooke139, A. Elliot139, K. V. Ellis139, K. Harder139, S. Harper139, J. Linacre139, K. Manolopoulos139, D. M. Newbold139, E. Olaiya139, D. Petyt139, T. Reis139, A. R. Sahasransu139, G. Salvi139, T. Schuh139, C. H. Shepherd-Themistocleous139, I. R. Tomalin139, K. C. Whalen139, T. Williams139, I. Andreou140, R. Bainbridge140, P. Bloch140, O. Buchmuller140, C. A. Carrillo Montoya140, G. S. Chahal140,zzz, D. Colling140, J. S. Dancu140, I. Das140, P. Dauncey140, G. Davies140, M. Della Negra140, S. Fayer140, G. Fedi140, G. Hall140, A. Howard140, G. Iles140, C. R. Knight140, P. Krueper140, J. Langford140, K. H. Law140, J. León Holgado140, L. Lyons140, A.-M. Magnan140, B. Maier140, S. Mallios140, M. Mieskolainen140, J. Nash140,aaaa, M. Pesaresi140, P. B. Pradeep140, B. C. Radburn-Smith140, A. Richards140, A. Rose140, K. Savva140, C. Seez140, R. Shukla140, A. Tapper140, K. Uchida140, G. P. Uttley140, T. Virdee140,dd, M. Vojinovic140, N. Wardle140, D. Winterbottom140, J. E. Cole141, A. Khan141, P. Kyberd141, I. D. Reid141, S. Abdullin142, A. Brinkerhoff142, E. Collins142, M. R. Darwish142, J. Dittmann142, K. Hatakeyama142, V. Hegde142, J. Hiltbrand142, B. McMaster142, J. Samudio142, S. Sawant142, C. Sutantawibul142, J. Wilson142, R. Bartek143, A. Dominguez143, A. E. Simsek143, S. S. Yu143, B. Bam144, A. Buchot Perraguin144, R. Chudasama144, S. I. Cooper144, C. Crovella144, S. V. Gleyzer144, E. Pearson144, C. U. Perez144, P. Rumerio144,bbbb, E. Usai144, R. Yi144, A. Akpinar145, C. Cosby145, G. De Castro145, Z. Demiragli145, C. Erice145, C. Fangmeier145, C. Fernandez Madrazo145, E. Fontanesi145, D. Gastler145, F. Golf145, S. Jeon145, J. O‘cain145, I. Reed145, J. Rohlf145, K. Salyer145, D. Sperka145, D. Spitzbart145, I. Suarez145, A. Tsatsos145, A. G. Zecchinelli145, G. Barone146, G. Benelli146, D. Cutts146, L. Gouskos146, M. Hadley146, U. Heintz146, K. W. Ho146, J. M. Hogan146,cccc, T. Kwon146, G. Landsberg146, K. T. Lau146, J. Luo146, S. Mondal146, T. Russell146, S. Sagir146,dddd, X. Shen146, M. Stamenkovic146, N. Venkatasubramanian146, S. Abbott147, B. Barton147, C. Brainerd147, R. Breedon147, H. Cai147, M. Calderon De La Barca Sanchez147, M. Chertok147, M. Citron147, J. Conway147, P. T. Cox147, R. Erbacher147, F. Jensen147, O. Kukral147, G. Mocellin147, M. Mulhearn147, S. Ostrom147, W. Wei147, S. Yoo147, F. Zhang147, K. Adamidis148, M. Bachtis148, D. Campos148, R. Cousins148, A. Datta148, G. Flores Avila148, J. Hauser148, M. Ignatenko148, M. A. Iqbal148, T. Lam148, Y. f. Lo148, E. Manca148, A. Nunez Del Prado148, D. Saltzberg148, V. Valuev148, R. Clare149, J. W. Gary149, G. Hanson149, A. Aportela150, A. Arora150, J. G. Branson150, S. Cittolin150, S. Cooperstein150, D. Diaz150, J. Duarte150, L. Giannini150, Y. Gu150, J. Guiang150, R. Kansal150, V. Krutelyov150, R. Lee150, J. Letts150, M. Masciovecchio150, F. Mokhtar150, S. Mukherjee150, M. Pieri150, D. Primosch150, M. Quinnan150, V. Sharma150, M. Tadel150, E. Vourliotis150, F. Würthwein150, Y. Xiang150, A. Yagil150, A. Barzdukas151, L. Brennan151, C. Campagnari151, K. Downham151, C. Grieco151, M. M. Hussain151, J. Incandela151, J. Kim151, A. J. Li151, P. Masterson151, H. Mei151, J. Richman151, S. N. Santpur151, U. Sarica151, R. Schmitz151, F. Setti151, J. Sheplock151, D. Stuart151, T. Á. Vámi151, X. Yan151, D. Zhang151, S. Bhattacharya152, A. Bornheim152, O. Cerri152, J. Mao152, H. B. Newman152, G. Reales Gutiérrez152, M. Spiropulu152, J. R. Vlimant152, C. Wang152, S. Xie152, R. Y. Zhu152, J. Alison153, S. An153, P. Bryant153, M. Cremonesi153, V. Dutta153, T. Ferguson153, T. A. Gómez Espinosa153, A. Harilal153, A. Kallil Tharayil153, M. Kanemura153, C. Liu153, T. Mudholkar153, S. Murthy153, P. Palit153, K. Park153, M. Paulini153, A. Roberts153, A. Sanchez153, W. Terrill153, J. P. Cumalat154, W. T. Ford154, A. Hart154, A. Hassani154, N. Manganelli154, J. Pearkes154, C. Savard154, N. Schonbeck154, K. Stenson154, K. A. Ulmer154, S. R. Wagner154, N. Zipper154, D. Zuolo154, J. Alexander155, X. Chen155, D. J. Cranshaw155, J. Dickinson155, J. Fan155, X. Fan155, S. Hogan155, P. Kotamnives155, J. Monroy155, M. Oshiro155, J. R. Patterson155, M. Reid155, A. Ryd155, J. Thom155, P. Wittich155, R. Zou155, M. Albrow156, M. Alyari156, O. Amram156, G. Apollinari156, A. Apresyan156, L. A. T. Bauerdick156, D. Berry156, J. Berryhill156, P. C. Bhat156, K. Burkett156, J. N. Butler156, A. Canepa156, G. B. Cerati156, H. W. K. Cheung156, F. Chlebana156, G. Cummings156, I. Dutta156, V. D. Elvira156, J. Freeman156, A. Gandrakota156, Z. Gecse156, L. Gray156, D. Green156, A. Grummer156, S. Grünendahl156, D. Guerrero156, O. Gutsche156, R. M. Harris156, T. C. Herwig156, J. Hirschauer156, B. Jayatilaka156, S. Jindariani156, M. Johnson156, U. Joshi156, T. Klijnsma156, B. Klima156, K. H. M. Kwok156, S. Lammel156, C. Lee156, D. Lincoln156, R. Lipton156, T. Liu156, K. Maeshima156, D. Mason156, P. McBride156, P. Merkel156, S. Mrenna156, S. Nahn156, J. Ngadiuba156, D. Noonan156, S. Norberg156, V. Papadimitriou156, N. Pastika156, K. Pedro156, C. Pena156,eeee, F. Ravera156, A. Reinsvold Hall156,ffff, L. Ristori156, M. Safdari156, E. Sexton-Kennedy156, N. Smith156, A. Soha156, L. Spiegel156, S. Stoynev156, J. Strait156, L. Taylor156, S. Tkaczyk156, N. V. Tran156, L. Uplegger156, E. W. Vaandering156, I. Zoi156, C. Aruta157, P. Avery157, D. Bourilkov157, P. Chang157, V. Cherepanov157, R. D. Field157, C. Huh157, E. Koenig157, M. Kolosova157, J. Konigsberg157, A. Korytov157, K. Matchev157, N. Menendez157, G. Mitselmakher157, K. Mohrman157, A. Muthirakalayil Madhu157, N. Rawal157, S. Rosenzweig157, Y. Takahashi157, J. Wang157, T. Adams158, A. Al Kadhim158, A. Askew158, S. Bower158, R. Hashmi158, R. S. Kim158, S. Kim158, T. Kolberg158, G. Martinez158, H. Prosper158, P. R. Prova158, M. Wulansatiti158, R. Yohay158, J. Zhang158, B. Alsufyani159, S. Butalla159, S. Das159, T. Elkafrawy159,s, M. Hohlmann159, E. Yanes159, M. R. Adams160, A. Baty160, C. Bennett160, R. Cavanaugh160, R. Escobar Franco160, O. Evdokimov160, C. E. Gerber160, M. Hawksworth160, A. Hingrajiya160, D. J. Hofman160, J. h. Lee160, D. S. Lemos160, C. Mills160, S. Nanda160, G. Oh160, B. Ozek160, D. Pilipovic160, R. Pradhan160, E. Prifti160, T. Roy160, S. Rudrabhatla160, N. Singh160, M. B. Tonjes160, N. Varelas160, M. A. Wadud160, Z. Ye160, J. Yoo160, M. Alhusseini161, D. Blend161, K. Dilsiz161,gggg, L. Emediato161, G. Karaman161, O. K. Köseyan161, J.-P. Merlo161, A. Mestvirishvili161,hhhh, O. Neogi161, H. Ogul161,iiii, Y. Onel161, A. Penzo161, C. Snyder161, E. Tiras161,jjjj, B. Blumenfeld162, L. Corcodilos162, J. Davis162, A. V. Gritsan162, L. Kang162, S. Kyriacou162, P. Maksimovic162, M. Roguljic162, J. Roskes162, S. Sekhar162, M. Swartz162, A. Abreu163, L. F. Alcerro Alcerro163, J. Anguiano163, S. Arteaga Escatel163, P. Baringer163, A. Bean163, Z. Flowers163, D. Grove163, J. King163, G. Krintiras163, M. Lazarovits163, C. Le Mahieu163, J. Marquez163, M. Murray163, M. Nickel163, S. Popescu163,kkkk, C. Rogan163, C. Royon163, S. Sanders163, C. Smith163, G. Wilson163, B. Allmond164, R. Gujju Gurunadha164, A. Ivanov164, K. Kaadze164, Y. Maravin164, J. Natoli164, D. Roy164, G. Sorrentino164, A. Baden165, A. Belloni165, J. Bistany-riebman165, Y. M. Chen165, S. C. Eno165, N. J. Hadley165, S. Jabeen165, R. G. Kellogg165, T. Koeth165, B. Kronheim165, Y. Lai165, S. Lascio165, A. C. Mignerey165, S. Nabili165, C. Palmer165, C. Papageorgakis165, M. M. Paranjpe165, E. Popova165,p, A. Shevelev165, L. Wang165, L. Zhang165, C. Baldenegro Barrera166, J. Bendavid166, S. Bright-Thonney166, I. A. Cali166, P. c. Chou166, M. D’Alfonso166, J. Eysermans166, C. Freer166, G. Gomez-Ceballos166, M. Goncharov166, G. Grosso166, P. Harris166, D. Hoang166, D. Kovalskyi166, J. Krupa166, L. Lavezzo166, Y.-J. Lee166, K. Long166, C. Mcginn166, A. Novak166, M. I. Park166, C. Paus166, C. Reissel166, C. Roland166, G. Roland166, S. Rothman166, G. S. F. Stephans166, Z. Wang166, B. Wyslouch166, T. J. Yang166, B. Crossman167, C. Kapsiak167, M. Krohn167, D. Mahon167, J. Mans167, B. Marzocchi167, M. Revering167, R. Rusack167, R. Saradhy167, N. Strobbe167, K. Bloom168, D. R. Claes168, G. Haza168, J. Hossain168, C. Joo168, I. Kravchenko168, A. Rohilla168, J. E. Siado168, W. Tabb168, A. Vagnerini168, A. Wightman168, F. Yan168, D. Yu168, H. Bandyopadhyay169, L. Hay169, H. w. Hsia169, I. Iashvili169, A. Kalogeropoulos169, A. Kharchilava169, M. Morris169, D. Nguyen169, S. Rappoccio169, H. Rejeb Sfar169, A. Williams169, P. Young169, G. Alverson170, E. Barberis170, J. Bonilla170, B. Bylsma170, M. Campana170, J. Dervan170, Y. Haddad170, Y. Han170, I. Israr170, A. Krishna170, P. Levchenko170, J. Li170, M. Lu170, R. Mccarthy170, D. M. Morse170, V. Nguyen170, T. Orimoto170, A. Parker170, L. Skinnari170, E. Tsai170, D. Wood170, S. Dittmer171, K. A. Hahn171, D. Li171, Y. Liu171, M. Mcginnis171, Y. Miao171, D. G. Monk171, M. H. Schmitt171, A. Taliercio171, M. Velasco171, G. Agarwal172, R. Band172, R. Bucci172, S. Castells172, A. Das172, R. Goldouzian172, M. Hildreth172, K. Hurtado Anampa172, T. Ivanov172, C. Jessop172, K. Lannon172, J. Lawrence172, N. Loukas172, L. Lutton172, J. Mariano172, N. Marinelli172, I. Mcalister172, T. McCauley172, C. Mcgrady172, C. Moore172, Y. Musienko172,p, H. Nelson172, M. Osherson172, A. Piccinelli172, R. Ruchti172, A. Townsend172, Y. Wan172, M. Wayne172, H. Yockey172, M. Zarucki172, L. Zygala172, A. Basnet173, M. Carrigan173, L. S. Durkin173, C. Hill173, M. Joyce173, M. Nunez Ornelas173, K. Wei173, D. A. Wenzl173, B. L. Winer173, B. R. Yates173, H. Bouchamaoui174, K. Coldham174, P. Das174, G. Dezoort174, P. Elmer174, P. Fackeldey174, A. Frankenthal174, B. Greenberg174, N. Haubrich174, K. Kennedy174, G. Kopp174, S. Kwan174, D. Lange174, A. Loeliger174, D. Marlow174, I. Ojalvo174, J. Olsen174, F. Simpson174, D. Stickland174, C. Tully174, L. H. Vage174, S. Malik175, R. Sharma175, A. S. Bakshi176, S. Chandra176, R. Chawla176, A. Gu176, L. Gutay176, M. Jones176, A. W. Jung176, A. M. Koshy176, M. Liu176, G. Negro176, N. Neumeister176, G. Paspalaki176, S. Piperov176, J. F. Schulte176, A. K. Virdi176, F. Wang176, A. Wildridge176, W. Xie176, Y. Yao176, J. Dolen177, N. Parashar177, A. Pathak177, D. Acosta178, A. Agrawal178, T. Carnahan178, K. M. Ecklund178, P. J. Fernández Manteca178, S. Freed178, P. Gardner178, F. J. M. Geurts178, I. Krommydas178, W. Li178, J. Lin178, O. Miguel Colin178, B. P. Padley178, R. Redjimi178, J. Rotter178, E. Yigitbasi178, Y. Zhang178, A. Bodek179, P. de Barbaro179, R. Demina179, J. L. Dulemba179, A. Garcia-Bellido179, O. Hindrichs179, A. Khukhunaishvili179, N. Parmar179, P. Parygin179,p, R. Taus179, B. Chiarito180, J. P. Chou180, S. V. Clark180, D. Gadkari180, Y. Gershtein180, E. Halkiadakis180, M. Heindl180, C. Houghton180, D. Jaroslawski180, S. Konstantinou180, I. Laflotte180, A. Lath180, R. Montalvo180, K. Nash180, J. Reichert180, P. Saha180, S. Salur180, S. Schnetzer180, S. Somalwar180, R. Stone180, S. A. Thayil180, S. Thomas180, J. Vora180, D. Ally181, A. G. Delannoy181, S. Fiorendi181, S. Higginbotham181, T. Holmes181, A. R. Kanuganti181, N. Karunarathna181, L. Lee181, E. Nibigira181, S. Spanier181, D. Aebi182, M. Ahmad182, T. Akhter182, K. Androsov182,hhh, O. Bouhali182,llll, R. Eusebi182, J. Gilmore182, T. Huang182, T. Kamon182,mmmm, H. Kim182, S. Luo182, R. Mueller182, D. Overton182, A. Safonov182, N. Akchurin183, J. Damgov183, Y. Feng183, N. Gogate183, Y. Kazhykarim183, K. Lamichhane183, S. W. Lee183, C. Madrid183, A. Mankel183, T. Peltola183, I. Volobouev183, E. Appelt184, Y. Chen184, S. Greene184, A. Gurrola184, W. Johns184, R. Kunnawalkam Elayavalli184, A. Melo184, D. Rathjens184, F. Romeo184, P. Sheldon184, S. Tuo184, J. Velkovska184, J. Viinikainen184, B. Cardwell185, H. Chung185, B. Cox185, J. Hakala185, R. Hirosky185, A. Ledovskoy185, C. Mantilla185, C. Neu185, C. Ramón Álvarez185, S. Bhattacharya186, P. E. Karchin186, A. Aravind187, S. Banerjee187, K. Black187, T. Bose187, E. Chavez187, S. Dasu187, P. Everaerts187, C. Galloni187, H. He187, M. Herndon187, A. Herve187, C. K. Koraka187, A. Lanaro187, R. Loveless187, J. Madhusudanan Sreekala187, A. Mallampalli187, A. Mohammadi187, S. Mondal187, G. Parida187, L. Pétré187, D. Pinna187, A. Savin187, V. Shang187, V. Sharma187, W. H. Smith187, D. Teague187, H. F. Tsoi187, W. Vetens187, A. Warden187, S. Afanasiev188, V. Alexakhin188, D. Budkouski188, I. Golutvin188,a, I. Gorbunov188, V. Karjavine188, O. Kodolova188,p,nnnn, V. Korenkov188, A. Lanev188, A. Malakhov188, V. Matveev188,p, A. Nikitenko188,nnnn,oooo, V. Palichik188, V. Perelygin188, M. Savina188, V. Shalaev188, S. Shmatov188, S. Shulha188, V. Smirnov188, O. Teryaev188, N. Voytishin188, B. S. Yuldashev188,a,pppp, A. Zarubin188, I. Zhizhin188, G. Gavrilov188, V. Golovtcov188, Y. Ivanov188, V. Kim188,p, V. Murzin188, V. Oreshkin188, D. Sosnov188, V. Sulimov188, L. Uvarov188, A. Vorobyev188,a, Yu. Andreev188, A. Dermenev188, S. Gninenko188, N. Golubev188, A. Karneyeu188, D. Kirpichnikov188, M. Kirsanov188, N. Krasnikov188, I. Tlisova188, A. Toropin188, T. Aushev188, K. Ivanov188, V. Gavrilov188, N. Lychkovskaya188, V. Popov188, A. Zhokin188, R. Chistov188,p, M. Danilov188,p, S. Polikarpov188,p, V. Andreev188, M. Azarkin188, M. Kirakosyan188, A. Terkulov188, E. Boos188, V. Bunichev188, M. Dubinin188,eeee, L. Dudko188, V. Klyukhin188, M. Perfilov188, S. Petrushanko188, V. Savrin188, A. Snigirev188, G. Vorotnikov188, V. Blinov188,p, T. Dimova188,p, A. Kozyrev188,p, O. Radchenko188,p, Y. Skovpen188,p, V. Kachanov188, S. Slabospitskii188, A. Uzunian188, A. Babaev188, V. Borshch188, and D. Druzhkin188,qqqq (CMS Collaboration)

  • 1Yerevan Physics Institute, Yerevan, Armenia
  • 2Institut für Hochenergiephysik, Vienna, Austria
  • 3Universiteit Antwerpen, Antwerpen, Belgium
  • 4Vrije Universiteit Brussel, Brussel, Belgium
  • 5Université Libre de Bruxelles, Bruxelles, Belgium
  • 6Ghent University, Ghent, Belgium
  • 7Université Catholique de Louvain, Louvain-la-Neuve, Belgium
  • 8Centro Brasileiro de Pesquisas Fisicas, Rio de Janeiro, Brazil
  • 9Universidade do Estado do Rio de Janeiro, Rio de Janeiro, Brazil
  • 10Universidade Estadual Paulista, Universidade Federal do ABC, São Paulo, Brazil
  • 11Institute for Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences, Sofia, Bulgaria
  • 12University of Sofia, Sofia, Bulgaria
  • 13Instituto De Alta Investigación, Universidad de Tarapacá, Casilla 7 D, Arica, Chile
  • 14Beihang University, Beijing, China
  • 15Department of Physics, Tsinghua University, Beijing, China
  • 16Institute of High Energy Physics, Beijing, China
  • 17State Key Laboratory of Nuclear Physics and Technology, Peking University, Beijing, China
  • 18Guangdong Provincial Key Laboratory of Nuclear Science and Guangdong-Hong Kong Joint Laboratory of Quantum Matter, South China Normal University, Guangzhou, China
  • 19Sun Yat-Sen University, Guangzhou, China
  • 20University of Science and Technology of China, Hefei, China
  • 21Nanjing Normal University, Nanjing, China
  • 22Institute of Modern Physics and Key Laboratory of Nuclear Physics and Ion-beam Application (MOE)—Fudan University, Shanghai, China
  • 23Zhejiang University, Hangzhou, Zhejiang, China
  • 24Universidad de Los Andes, Bogota, Colombia
  • 25Universidad de Antioquia, Medellin, Colombia
  • 26University of Split, Faculty of Electrical Engineering, Mechanical Engineering and Naval Architecture, Split, Croatia
  • 27University of Split, Faculty of Science, Split, Croatia
  • 28Institute Rudjer Boskovic, Zagreb, Croatia
  • 29University of Cyprus, Nicosia, Cyprus
  • 30Charles University, Prague, Czech Republic
  • 31Universidad San Francisco de Quito, Quito, Ecuador
  • 32Academy of Scientific Research and Technology of the Arab Republic of Egypt, Egyptian Network of High Energy Physics, Cairo, Egypt
  • 33Center for High Energy Physics (CHEP-FU), Fayoum University, El-Fayoum, Egypt
  • 34National Institute of Chemical Physics and Biophysics, Tallinn, Estonia
  • 35Department of Physics, University of Helsinki, Helsinki, Finland
  • 36Helsinki Institute of Physics, Helsinki, Finland
  • 37Lappeenranta-Lahti University of Technology, Lappeenranta, Finland
  • 38IRFU, CEA, Université Paris-Saclay, Gif-sur-Yvette, France
  • 39Laboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de Paris, Palaiseau, France
  • 40Université de Strasbourg, CNRS, IPHC UMR 7178, Strasbourg, France
  • 41Centre de Calcul de l’Institut National de Physique Nucleaire et de Physique des Particules, CNRS/IN2P3, Villeurbanne, France
  • 42Institut de Physique des 2 Infinis de Lyon (IP2I), Villeurbanne, France
  • 43Georgian Technical University, Tbilisi, Georgia
  • 44RWTH Aachen University, I. Physikalisches Institut, Aachen, Germany
  • 45RWTH Aachen University, III. Physikalisches Institut A, Aachen, Germany
  • 46RWTH Aachen University, III. Physikalisches Institut B, Aachen, Germany
  • 47Deutsches Elektronen-Synchrotron, Hamburg, Germany
  • 48University of Hamburg, Hamburg, Germany
  • 49Karlsruher Institut fuer Technologie, Karlsruhe, Germany
  • 50Institute of Nuclear and Particle Physics (INPP), NCSR Demokritos, Aghia Paraskevi, Greece
  • 51National and Kapodistrian University of Athens, Athens, Greece
  • 52National Technical University of Athens, Athens, Greece
  • 53University of Ioánnina, Ioánnina, Greece
  • 54HUN-REN Wigner Research Centre for Physics, Budapest, Hungary
  • 55MTA-ELTE Lendület CMS Particle and Nuclear Physics Group, Eötvös Loránd University, Budapest, Hungary
  • 56Faculty of Informatics, University of Debrecen, Debrecen, Hungary
  • 57HUN-REN ATOMKI—Institute of Nuclear Research, Debrecen, Hungary
  • 58Karoly Robert Campus, MATE Institute of Technology, Gyongyos, Hungary
  • 59Panjab University, Chandigarh, India
  • 60University of Delhi, Delhi, India
  • 61Saha Institute of Nuclear Physics, HBNI, Kolkata, India
  • 62Indian Institute of Technology Madras, Madras, India
  • 63Tata Institute of Fundamental Research-A, Mumbai, India
  • 64Tata Institute of Fundamental Research-B, Mumbai, India
  • 65National Institute of Science Education and Research, An OCC of Homi Bhabha National Institute, Bhubaneswar, Odisha, India
  • 66Indian Institute of Science Education and Research (IISER), Pune, India
  • 67Isfahan University of Technology, Isfahan, Iran
  • 68Institute for Research in Fundamental Sciences (IPM), Tehran, Iran
  • 69University College Dublin, Dublin, Ireland
  • 70aINFN Sezione di Bari, Bari, Italy
  • 70bUniversità di Bari , Bari, Italy
  • 70cPolitecnico di Bari, Bari, Italy
  • 71aINFN Sezione di Bologna, Bologna, Italy
  • 71bUniversità di Bologna , Bologna, Italy
  • 72aINFN Sezione di Catania, Catania, Italy
  • 72bUniversità di Catania , Catania, Italy
  • 73aINFN Sezione di Firenze, Firenze, Italy
  • 73bUniversità di Firenze , Firenze, Italy
  • 74INFN Laboratori Nazionali di Frascati, Frascati, Italy
  • 75aINFN Sezione di Genova, Genova, Italy
  • 75bUniversità di Genova , Genova, Italy
  • 76aINFN Sezione di Milano-Bicocca, Milano, Italy
  • 76bUniversità di Milano-Bicocca , Milano, Italy
  • 77aINFN Sezione di Napoli, Napoli, Italy
  • 77bUniversità di Napoli ’Federico II’, Napoli, Italy
  • 77cUniversità della Basilicata , Potenza, Italy
  • 77dScuola Superiore Meridionale (SSM), Napoli, Italy
  • 78aINFN Sezione di Padova, Padova, Italy
  • 78bUniversità di Padova , Padova, Italy
  • 78cUniversità di Trento , Trento, Italy
  • 79aINFN Sezione di Pavia, Pavia, Italy
  • 79bUniversità di Pavia , Pavia, Italy
  • 80aINFN Sezione di Perugia, Perugia, Italy
  • 80bUniversità di Perugia , Perugia, Italy
  • 81aINFN Sezione di Pisa, Pisa, Italy
  • 81bUniversità di Pisa , Pisa, Italy
  • 81cScuola Normale Superiore di Pisa, Pisa, Italy
  • 81dUniversità di Siena , Siena, Italy
  • 82aINFN Sezione di Roma, Roma, Italy
  • 82bSapienza Università di Roma , Roma, Italy
  • 83aINFN Sezione di Torino, Torino, Italy
  • 83bUniversità di Torino , Torino, Italy
  • 83cUniversità del Piemonte Orientale , Novara, Italy
  • 84aINFN Sezione di Trieste, Trieste, Italy
  • 84bUniversità di Trieste , Trieste, Italy
  • 85Kyungpook National University, Daegu, Korea
  • 86Department of Mathematics and Physics—GWNU, Gangneung, Korea
  • 87Chonnam National University, Institute for Universe and Elementary Particles, Kwangju, Korea
  • 88Hanyang University, Seoul, Korea
  • 89Korea University, Seoul, Korea
  • 90Kyung Hee University, Department of Physics, Seoul, Korea
  • 91Sejong University, Seoul, Korea
  • 92Seoul National University, Seoul, Korea
  • 93University of Seoul, Seoul, Korea
  • 94Yonsei University, Department of Physics, Seoul, Korea
  • 95Sungkyunkwan University, Suwon, Korea
  • 96College of Engineering and Technology, American University of the Middle East (AUM), Dasman, Kuwait
  • 97Kuwait University—College of Science—Department of Physics, Safat, Kuwait
  • 98Riga Technical University, Riga, Latvia
  • 99University of Latvia (LU), Riga, Latvia
  • 100Vilnius University, Vilnius, Lithuania
  • 101National Centre for Particle Physics, Universiti Malaya, Kuala Lumpur, Malaysia
  • 102Universidad de Sonora (UNISON), Hermosillo, Mexico
  • 103Centro de Investigacion y de Estudios Avanzados del IPN, Mexico City, Mexico
  • 104Universidad Iberoamericana, Mexico City, Mexico
  • 105Benemerita Universidad Autonoma de Puebla, Puebla, Mexico
  • 106University of Montenegro, Podgorica, Montenegro
  • 107University of Canterbury, Christchurch, New Zealand
  • 108National Centre for Physics, Quaid-I-Azam University, Islamabad, Pakistan
  • 109AGH University of Krakow, Krakow, Poland
  • 110National Centre for Nuclear Research, Swierk, Poland
  • 111Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Warsaw, Poland
  • 112Warsaw University of Technology, Warsaw, Poland
  • 113Laboratório de Instrumentação e Física Experimental de Partículas, Lisboa, Portugal
  • 114Faculty of Physics, University of Belgrade, Belgrade, Serbia
  • 115VINCA Institute of Nuclear Sciences, University of Belgrade, Belgrade, Serbia
  • 116Centro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT), Madrid, Spain
  • 117Universidad Autónoma de Madrid, Madrid, Spain
  • 118Universidad de Oviedo, Instituto Universitario de Ciencias y Tecnologías Espaciales de Asturias (ICTEA), Oviedo, Spain
  • 119Instituto de Física de Cantabria (IFCA), CSIC-Universidad de Cantabria, Santander, Spain
  • 120University of Colombo, Colombo, Sri Lanka
  • 121University of Ruhuna, Department of Physics, Matara, Sri Lanka
  • 122CERN, European Organization for Nuclear Research, Geneva, Switzerland
  • 123PSI Center for Neutron and Muon Sciences, Villigen, Switzerland
  • 124ETH Zurich—Institute for Particle Physics and Astrophysics (IPA), Zurich, Switzerland
  • 125Universität Zürich, Zurich, Switzerland
  • 126National Central University, Chung-Li, Taiwan
  • 127National Taiwan University (NTU), Taipei, Taiwan
  • 128High Energy Physics Research Unit, Department of Physics, Faculty of Science, Chulalongkorn University, Bangkok, Thailand
  • 129Tunis El Manar University, Tunis, Tunisia
  • 130Çukurova University, Physics Department, Science and Art Faculty, Adana, Turkey
  • 131Middle East Technical University, Physics Department, Ankara, Turkey
  • 132Bogazici University, Istanbul, Turkey
  • 133Istanbul Technical University, Istanbul, Turkey
  • 134Istanbul University, Istanbul, Turkey
  • 135Yildiz Technical University, Istanbul, Turkey
  • 136Institute for Scintillation Materials of National Academy of Science of Ukraine, Kharkiv, Ukraine
  • 137National Science Centre, Kharkiv Institute of Physics and Technology, Kharkiv, Ukraine
  • 138University of Bristol, Bristol, United Kingdom
  • 139Rutherford Appleton Laboratory, Didcot, United Kingdom
  • 140Imperial College, London, United Kingdom
  • 141Brunel University, Uxbridge, United Kingdom
  • 142Baylor University, Waco, Texas, USA
  • 143Catholic University of America, Washington, DC, USA
  • 144The University of Alabama, Tuscaloosa, Alabama, USA
  • 145Boston University, Boston, Massachusetts, USA
  • 146Brown University, Providence, Rhode Island, USA
  • 147University of California, Davis, Davis, California, USA
  • 148University of California, Los Angeles, California, USA
  • 149University of California, Riverside, Riverside, California, USA
  • 150University of California, San Diego, La Jolla, California, USA
  • 151University of California, Santa Barbara—Department of Physics, Santa Barbara, California, USA
  • 152California Institute of Technology, Pasadena, California, USA
  • 153Carnegie Mellon University, Pittsburgh, Pennsylvania, USA
  • 154University of Colorado Boulder, Boulder, Colorado, USA
  • 155Cornell University, Ithaca, New York, USA
  • 156Fermi National Accelerator Laboratory, Batavia, Illinois, USA
  • 157University of Florida, Gainesville, Florida, USA
  • 158Florida State University, Tallahassee, Florida, USA
  • 159Florida Institute of Technology, Melbourne, Florida, USA
  • 160University of Illinois Chicago, Chicago, Illinois, USA
  • 161The University of Iowa, Iowa City, Iowa, USA
  • 162Johns Hopkins University, Baltimore, Maryland, USA
  • 163The University of Kansas, Lawrence, Kansas, USA
  • 164Kansas State University, Manhattan, Kansas, USA
  • 165University of Maryland, College Park, Maryland, USA
  • 166Massachusetts Institute of Technology, Cambridge, Massachusetts, USA
  • 167University of Minnesota, Minneapolis, Minnesota, USA
  • 168University of Nebraska-Lincoln, Lincoln, Nebraska, USA
  • 169State University of New York at Buffalo, Buffalo, New York, USA
  • 170Northeastern University, Boston, Massachusetts, USA
  • 171Northwestern University, Evanston, Illinois, USA
  • 172University of Notre Dame, Notre Dame, Indiana, USA
  • 173The Ohio State University, Columbus, Ohio, USA
  • 174Princeton University, Princeton, New Jersey, USA
  • 175University of Puerto Rico, Mayaguez, Puerto Rico, USA
  • 176Purdue University, West Lafayette, Indiana, USA
  • 177Purdue University Northwest, Hammond, Indiana, USA
  • 178Rice University, Houston, Texas, USA
  • 179University of Rochester, Rochester, New York, USA
  • 180Rutgers, The State University of New Jersey, Piscataway, New Jersey, USA
  • 181University of Tennessee, Knoxville, Tennessee, USA
  • 182Texas A&M University, College Station, Texas, USA
  • 183Texas Tech University, Lubbock, Texas, USA
  • 184Vanderbilt University, Nashville, Tennessee, USA
  • 185University of Virginia, Charlottesville, Virginia, USA
  • 186Wayne State University, Detroit, Michigan, USA
  • 187University of Wisconsin—Madison, Madison, Wisconsin, USA
  • 188An institute or international laboratory covered by a cooperation agreement with CERN

  • *Full author list given at the end of the article.
  • aDeceased.
  • bAlso at Yerevan State University, Yerevan, Armenia.
  • cAlso at TU Wien, Vienna, Austria.
  • dAlso at Ghent University, Ghent, Belgium.
  • eAlso at Universidade do Estado do Rio de Janeiro, Rio de Janeiro, Brazil.
  • fAlso at FACAMP—Faculdades de Campinas, Sao Paulo, Brazil.
  • gAlso at Universidade Estadual de Campinas, Campinas, Brazil.
  • hAlso at Federal University of Rio Grande do Sul, Porto Alegre, Brazil.
  • iAlso at University of Chinese Academy of Sciences, Beijing, China.
  • jAlso at China Center of Advanced Science and Technology, Beijing, China.
  • kAlso at University of Chinese Academy of Sciences, Beijing, China.
  • lAlso at China Spallation Neutron Source, Guangdong, China.
  • mAlso at Henan Normal University, Xinxiang, China.
  • nAlso at University of Shanghai for Science and Technology, Shanghai, China.
  • oAlso at The University of Iowa, Iowa City, Iowa, USA.
  • pAlso at Another institute or international laboratory covered by a cooperation agreement with CERN.
  • qAlso at Zewail City of Science and Technology, Zewail, Egypt.
  • rAlso at British University in Egypt, Cairo, Egypt.
  • sAlso at Ain Shams University, Cairo, Egypt.
  • tAlso at Purdue University, West Lafayette, Indiana, USA.
  • uAlso at Université de Haute Alsace, Mulhouse, France.
  • vAlso at Istinye University, Istanbul, Turkey.
  • wAlso at Tbilisi State University, Tbilisi, Georgia.
  • xAlso at The University of the State of Amazonas, Manaus, Brazil.
  • yAlso at University of Hamburg, Hamburg, Germany.
  • zAlso at RWTH Aachen University, III. Physikalisches Institut A, Aachen, Germany.
  • aaAlso at Bergische University Wuppertal (BUW), Wuppertal, Germany.
  • bbAlso at Brandenburg University of Technology, Cottbus, Germany.
  • ccAlso at Forschungszentrum Jülich, Juelich, Germany.
  • ddAlso at CERN, European Organization for Nuclear Research, Geneva, Switzerland.
  • eeAlso at HUN-REN ATOMKI—Institute of Nuclear Research, Debrecen, Hungary.
  • ffAlso at Universitatea Babes-Bolyai—Facultatea de Fizica, Cluj-Napoca, Romania.
  • ggAlso at MTA-ELTE Lendület CMS Particle and Nuclear Physics Group, Eötvös Loránd University, Budapest, Hungary.
  • hhAlso at HUN-REN Wigner Research Centre for Physics, Budapest, Hungary.
  • iiAlso at Physics Department, Faculty of Science, Assiut University, Assiut, Egypt.
  • jjAlso at Punjab Agricultural University, Ludhiana, India.
  • kkAlso at University of Visva-Bharati, Santiniketan, India.
  • llAlso at Indian Institute of Science (IISc), Bangalore, India.
  • mmAlso at Amity University Uttar Pradesh, Noida, India.
  • nnAlso at IIT Bhubaneswar, Bhubaneswar, India.
  • ooAlso at Institute of Physics, Bhubaneswar, India.
  • ppAlso at University of Hyderabad, Hyderabad, India.
  • qqAlso at Deutsches Elektronen-Synchrotron, Hamburg, Germany.
  • rrAlso at Isfahan University of Technology, Isfahan, Iran.
  • ssAlso at Sharif University of Technology, Tehran, Iran.
  • ttAlso at Department of Physics, University of Science and Technology of Mazandaran, Behshahr, Iran.
  • uuAlso at Department of Physics, Faculty of Science, Arak University, ARAK, Iran.
  • vvAlso at Helwan University, Cairo, Egypt.
  • wwAlso at Italian National Agency for New Technologies, Energy and Sustainable Economic Development, Bologna, Italy.
  • xxAlso at Centro Siciliano di Fisica Nucleare e di Struttura Della Materia, Catania, Italy.
  • yyAlso at Università degli Studi Guglielmo Marconi, Roma, Italy.
  • zzAlso at Scuola Superiore Meridionale, Università di Napoli ’Federico II’, Napoli, Italy.
  • aaaAlso at Fermi National Accelerator Laboratory, Batavia, Illinois, USA.
  • bbbAlso at Consiglio Nazionale delle Ricerche—Istituto Officina dei Materiali, Perugia, Italy.
  • cccAlso at Department of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia.
  • dddAlso at Consejo Nacional de Ciencia y Tecnología, Mexico City, Mexico.
  • eeeAlso at Trincomalee Campus, Eastern University, Sri Lanka, Nilaveli, Sri Lanka.
  • fffAlso at Saegis Campus, Nugegoda, Sri Lanka.
  • gggAlso at National and Kapodistrian University of Athens, Athens, Greece.
  • hhhAlso at Ecole Polytechnique Fédérale Lausanne, Lausanne, Switzerland.
  • iiiAlso at Universität Zürich, Zurich, Switzerland.
  • jjjAlso at Stefan Meyer Institute for Subatomic Physics, Vienna, Austria.
  • kkkAlso at Laboratoire d’Annecy-le-Vieux de Physique des Particules, IN2P3-CNRS, Annecy-le-Vieux, France.
  • lllAlso at Near East University, Research Center of Experimental Health Science, Mersin, Turkey.
  • mmmAlso at Konya Technical University, Konya, Turkey.
  • nnnAlso at Izmir Bakircay University, Izmir, Turkey.
  • oooAlso at Adiyaman University, Adiyaman, Turkey.
  • pppAlso at Bozok Universitetesi Rektörlügü, Yozgat, Turkey.
  • qqqAlso at Marmara University, Istanbul, Turkey.
  • rrrAlso at Milli Savunma University, Istanbul, Turkey.
  • sssAlso at Kafkas University, Kars, Turkey.
  • tttAlso at Istanbul Okan University, Istanbul, Turkey.
  • uuuAlso at Hacettepe University, Ankara, Turkey.
  • vvvAlso at Erzincan Binali Yildirim University, Erzincan, Turkey.
  • wwwAlso at Istanbul University—Cerrahpasa, Faculty of Engineering, Istanbul, Turkey.
  • xxxAlso at Yildiz Technical University, Istanbul, Turkey.
  • yyyAlso at School of Physics and Astronomy, University of Southampton, Southampton, United Kingdom.
  • zzzAlso at IPPP Durham University, Durham, United Kingdom.
  • aaaaAlso at Monash University, Faculty of Science, Clayton, Australia.
  • bbbbAlso at Università di Torino, Torino, Italy.
  • ccccAlso at Bethel University, St. Paul, Minnesota, USA.
  • ddddAlso at Karamanoğlu Mehmetbey University, Karaman, Turkey.
  • eeeeAlso at California Institute of Technology, Pasadena, California, USA.
  • ffffAlso at United States Naval Academy, Annapolis, Maryland, USA.
  • ggggAlso at Bingol University, Bingol, Turkey.
  • hhhhAlso at Georgian Technical University, Tbilisi, Georgia.
  • iiiiAlso at Sinop University, Sinop, Turkey.
  • jjjjAlso at Erciyes University, Kayseri, Turkey.
  • kkkkAlso at Horia Hulubei National Institute of Physics and Nuclear Engineering (IFIN-HH), Bucharest, Romania.
  • llllAlso at Texas A&M University at Qatar, Doha, Qatar.
  • mmmmAlso at Kyungpook National University, Daegu, Korea.
  • nnnnAlso at Yerevan Physics Institute, Yerevan, Armenia.
  • ooooAlso at Imperial College, London, United Kingdom.
  • ppppAlso at Institute of Nuclear Physics of the Uzbekistan Academy of Sciences, Tashkent, Uzbekistan.
  • qqqqAlso at Universiteit Antwerpen, Antwerpen, Belgium.

Phys. Rev. D 112, 112001 – Published 1 December, 2025

DOI: https://doi.org/10.1103/6s8n-pvmy

Abstract

A search for γH production is performed with data from the CMS experiment at the LHC corresponding to an integrated luminosity of 138  fb−1 at a proton-proton center-of-mass collision energy of 13  TeV. The analysis focuses on the topology of a boosted Higgs boson recoiling against a high-energy photon. The final states of H→bb¯ and H→4ℓ are analyzed. This study examines effective HZγ and Hγγ anomalous couplings within the context of an effective field theory. In this approach, the production cross section is constrained to be σγH<16.4  fb at 95% confidence level (CL). Simultaneous constraints on four anomalous couplings involving HZγ and Hγγ are provided. Additionally, the production rate for H→4ℓ is examined to assess potential enhancements in the Yukawa couplings between light quarks and the Higgs boson. Assuming the standard model values for the Yukawa couplings of the bottom and top quarks, the following simultaneous constraints are obtained: κu=(0.0±1.5)×103, κd=(0.0−6.8+6.7)×102, κs=0−32+30, and κc=0.0−2.8+2.3. This rules out the hypothesis that up- or down-type quarks in the first or second generation have the same Yukawa couplings as those in the third generation, with a CL greater than 95%.

View figure in article

Physics Subject Headings (PhySH)

Article Text

References (122)

  1. ATLAS Collaboration, Observation of a new particle in the search for the standard model Higgs boson with the ATLAS detector at the LHC, Phys. Lett. B 716, 1 (2012).
  2. CMS Collaboration, Observation of a new boson at a mass of 125  GeV with the CMS experiment at the LHC, Phys. Lett. B 716, 30 (2012).
  3. CMS Collaboration, Observation of a new boson with mass near 125  GeV in pp collisions at s=7 and 8  TeV, J. High Energy Phys. 06 (2013) 081.
  4. S. L. Glashow, Partial-symmetries of weak interactions, Nucl. Phys. 22, 579 (1961).
  5. F. Englert and R. Brout, Broken symmetry and the mass of gauge vector mesons, Phys. Rev. Lett. 13, 321 (1964).
  6. P. W. Higgs, Broken symmetries, massless particles and gauge fields, Phys. Lett. 12, 132 (1964).
  7. P. W. Higgs, Broken symmetries and the masses of gauge bosons, Phys. Rev. Lett. 13, 508 (1964).
  8. G. S. Guralnik, C. R. Hagen, and T. W. B. Kibble, Global conservation laws and massless particles, Phys. Rev. Lett. 13, 585 (1964).
  9. S. Weinberg, A model of leptons, Phys. Rev. Lett. 19, 1264 (1967).
  10. A. Salam, Weak and electromagnetic interactions, in Elementary Particle Physics: Relativistic Groups and Analyticity, edited by N. Svartholm (Almqvist & Wiksell, Stockholm, 1968), p. 367, proceedings of the eighth Nobel symposium.
  11. CMS Collaboration, Study of the mass and spin-parity of the Higgs boson candidate via its decays to Z boson pairs, Phys. Rev. Lett. 110, 081803 (2013).
  12. CMS Collaboration, Measurement of the properties of a Higgs boson in the four-lepton final state, Phys. Rev. D 89, 092007 (2014).
  13. CMS Collaboration, Constraints on the spin-parity and anomalous HVV couplings of the Higgs boson in proton collisions at 7 and 8  TeV, Phys. Rev. D 92, 012004 (2015).
  14. CMS Collaboration, Limits on the Higgs boson lifetime and width from its decay to four charged leptons, Phys. Rev. D 92, 072010 (2015).
  15. CMS Collaboration, Combined search for anomalous pseudoscalar HVV couplings in VH (H→bb¯) production and H→VV decay, Phys. Lett. B 759, 672 (2016).
  16. CMS Collaboration, Constraints on anomalous Higgs boson couplings using production and decay information in the four-lepton final state, Phys. Lett. B 775, 1 (2017).
  17. CMS Collaboration, Measurements of the Higgs boson width and anomalous HVV couplings from on-shell and off-shell production in the four-lepton final state, Phys. Rev. D 99, 112003 (2019).
  18. CMS Collaboration, Constraints on anomalous HVV couplings from the production of Higgs bosons decaying to τ lepton pairs, Phys. Rev. D 100, 112002 (2019).
  19. CMS Collaboration, Constraints on anomalous Higgs boson couplings to vector bosons and fermions in its production and decay using the four-lepton final state, Phys. Rev. D 104, 052004 (2021).
  20. CMS Collaboration, Measurement of the Higgs boson width and evidence of its off-shell contributions to ZZ production, Nat. Phys. 18, 1329 (2022).
  21. CMS Collaboration, Constraints on anomalous Higgs boson couplings to vector bosons and fermions from the production of Higgs bosons using the ττ final state, Phys. Rev. D 108, 032013 (2023).
  22. ATLAS Collaboration, Evidence for the spin-0 nature of the Higgs boson using ATLAS data, Phys. Lett. B 726, 120 (2013).
  23. ATLAS Collaboration, Study of the spin and parity of the Higgs boson in diboson decays with the ATLAS detector, Eur. Phys. J. C 75, 476 (2015).
  24. ATLAS Collaboration, Test of CP invariance in vector-boson fusion production of the Higgs boson using the Optimal Observable method in the ditau decay channel with the ATLAS detector, Eur. Phys. J. C 76, 658 (2016).
  25. ATLAS Collaboration, Measurement of inclusive and differential cross sections in the H→ZZ*→4ℓ decay channel in pp collisions at s=13  TeV with the ATLAS detector, J. High Energy Phys. 10 (2017) 132.
  26. ATLAS Collaboration, Measurement of the Higgs boson coupling properties in the H→ZZ*→4ℓ decay channel at s=13  TeV with the ATLAS detector, J. High Energy Phys. 03 (2018) 095.
  27. ATLAS Collaboration, Measurements of Higgs boson properties in the diphoton decay channel with 36  fb−1 of pp collision data at s=13  TeV with the ATLAS detector, Phys. Rev. D 98, 052005 (2018).
  28. ATLAS Collaboration, Higgs boson production cross-section measurements and their EFT interpretation in the 4ℓ decay channel at s=13  TeV with the ATLAS detector, Eur. Phys. J. C 80, 957 (2020); ATLAS CollaborationEur. Phys. J. C81, 398(E) (2021).
  29. ATLAS Collaboration, Test of CP invariance in Higgs boson vector-boson-fusion production using the H→γγ channel with the ATLAS detector, Phys. Rev. Lett. 131, 061802 (2023).
  30. ATLAS Collaboration, Test of CP-invariance of the Higgs boson in vector-boson fusion production and its decay into four leptons, J. High Energy Phys. 05 (2024) 105.
  31. D. de Florian, C. Grojean, F. Maltoni, C. Mariotti, A. Nikitenko, M. Pieri, P. Savard, M. Schumacher, and R. Tanaka, Handbook of LHC Higgs cross sections: 4. Deciphering the nature of the Higgs sector, CERN Report, Report No. CERN-2017-002-M, 2016.
  32. ATLAS and CMS Collaborations, Evidence for the Higgs boson decay to a Z boson and a photon at the LHC, Phys. Rev. Lett. 132, 021803 (2024).
  33. CMS Collaboration, Observation of WWγ production and search for Hγ production in proton-proton collisions at s=13  TeV, Phys. Rev. Lett. 132, 121901 (2024).
  34. CMS Collaboration, Search for narrow Hγ resonances in proton-proton collisions at s=13  TeV, Phys. Rev. Lett. 122, 081804 (2019).
  35. ATLAS Collaboration, Search for heavy resonances decaying to a photon and a hadronically decaying Z/W/H boson in pp collisions at s=13  TeV with the ATLAS detector, Phys. Rev. D 98, 032015 (2018).
  36. ATLAS Collaboration, Search for heavy resonances decaying into a photon and a hadronically decaying Higgs boson in pp collisions at s=13  TeV with the ATLAS detector, Phys. Rev. Lett. 125, 251802 (2020).
  37. A. Abbasabadi, D. Bowser-Chao, D. A. Dicus, and W. W. Repko, Higgs-photon associated production at hadron colliders, Phys. Rev. D 58, 057301 (1998).
  38. H. Khanpour, S. Khatibi, and M. M. Najafabadi, Probing Higgs boson couplings in H+γ production at the LHC, Phys. Lett. B 773, 462 (2017).
  39. L. Shi, Z. Liang, B. Liu, and Z. He, Constraining the anomalous Higgs boson coupling in H+γ production, Chin. Phys. C 43, 043001 (2019).
  40. J. Davis, A. V. Gritsan, L. S. M. Guerra, S. Kyriacou, J. Roskes, and M. Schulze, Constraining anomalous Higgs boson couplings to virtual photons, Phys. Rev. D 105, 096027 (2022).
  41. I. Brivio, Y. Jiang, and M. Trott, The SMEFTsim package, theory and tools, J. High Energy Phys. 12 (2017) 070.
  42. I. Brivio, SMEFTsim 3.0—a practical guide, J. High Energy Phys. 04 (2021) 073.
  43. J. Alwall, R. Frederix, S. Frixione, V. Hirschi, F. Maltoni, O. Mattelaer, H. S. Shao, T. Stelzer, P. Torrielli, and M. Zaro, The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations, J. High Energy Phys. 07 (2014) 079.
  44. A. Dedes, W. Materkowska, M. Paraskevas, J. Rosiek, and K. Suxho, Feynman rules for the standard model effective field theory in Rξ -gauges, J. High Energy Phys. 06 (2017) 143.
  45. ATLAS Collaboration, Drell–Yan tails beyond the standard model, J. High Energy Phys. 03 (2023) 064.
  46. A. L. Kagan, G. Perez, F. Petriello, Y. Soreq, S. Stoynev, and J. Zupan, Exclusive window onto Higgs Yukawa couplings, Phys. Rev. Lett. 114, 101802 (2015).
  47. J. A. Aguilar-Saavedra, J. M. Cano, and J. M. No, More light on Higgs flavor at the LHC: Higgs boson couplings to light quarks through H+γ production, Phys. Rev. D 103, 095023 (2021).
  48. Y. Zhou, Constraining the Higgs boson coupling to light quarks in the H→ZZ final states, Phys. Rev. D 93, 013019 (2016).
  49. Y. Zhou, Probing anomalous couplings of the Higgs boson to weak bosons and fermions with precision calculations, Ph.D. thesis, Johns Hopkins University, 2019, CERN-THESIS-2019-007.
  50. E. Balzani, R. Gröber, and M. Vitti, Light-quark Yukawa couplings from off-shell Higgs production, J. High Energy Phys. 10 (2023) 027.
  51. CMS Collaboration, Search for Higgs boson decay to a charm quark-antiquark pair in proton-proton collisions at s=13  TeV, Phys. Rev. Lett. 131, 061801 (2023).
  52. ATLAS Collaboration, Direct constraint on the Higgs-charm coupling from a search for Higgs boson decays into charm quarks with the ATLAS detector, Eur. Phys. J. C 82, 717 (2022).
  53. F. Bishara, U. Haisch, P. F. Monni, and E. Re, Constraining light-quark Yukawa couplings from Higgs distributions, Phys. Rev. Lett. 118, 121801 (2017).
  54. CMS Collaboration, Measurement and interpretation of differential cross sections for Higgs boson production at s=13  TeV, Phys. Lett. B 792, 369 (2019).
  55. 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.
  56. CMS Collaboration, Measurements of inclusive and differential cross sections for the Higgs boson production and decay to four-leptons in proton-proton collisions at s=13  TeV, J. High Energy Phys. 08 (2023) 040.
  57. G. Perez, Y. Soreq, E. Stamou, and K. Tobioka, Constraining the charm Yukawa and Higgs-quark coupling universality, Phys. Rev. D 92, 033016 (2015).
  58. G. T. Bodwin, F. Petriello, S. Stoynev, and M. Velasco, Higgs boson decays to quarkonia and the Hcc coupling, Phys. Rev. D 88, 053003 (2013).
  59. Y. Soreq, H. X. Zhu, and J. Zupan, Light quark Yukawa couplings from Higgs kinematics, J. High Energy Phys. 12 (2016) 045.
  60. HEPData record for this analysis (2025), 10.17182/hepdata.154965.
  61. CMS Collaboration, The CMS experiment at the CERN LHC, J. Instrum. 3, S08004 (2008).
  62. W. Adam et al. (CMS Tracker Group), The CMS Phase-1 pixel detector upgrade, J. Instrum. 16, P02027 (2020).
  63. CMS Collaboration, Performance of the CMS Level-1 trigger in proton-proton collisions at s=13  TeV, J. Instrum. 15, P10017 (2020).
  64. CMS Collaboration, The CMS trigger system, J. Instrum. 12, P01020 (2016).
  65. CMS Collaboration, Performance of the CMS high-level trigger during LHC Run 2, J. Instrum. 19, P11021 (2024).
  66. CMS Collaboration, Technical proposal for the Phase-II upgrade of the Compact Muon Solenoid, CMS Technical Proposal Report No. CERN-LHCC-2015-010, CMS-TDR-15-02, 2015.
  67. CMS Collaboration, Particle-flow reconstruction and global event description with the CMS detector, J. Instrum. 12, P10003 (2017).
  68. M. Cacciari, G. P. Salam, and G. Soyez, The anti-kT jet clustering algorithm, J. High Energy Phys. 04 (2008) 063.
  69. M. Cacciari, G. P. Salam, and G. Soyez, FastJet user manual, Eur. Phys. J. C 72, 1896 (2012).
  70. CMS Collaboration, Jet energy scale and resolution in the CMS experiment in pp collisions at 8 TeV, J. Instrum. 12, P02014 (2016).
  71. S. Agostinelli et al. (GEANT4 Collaboration), geant4—a simulation toolkit, Nucl. Instrum. Methods Phys. Res., Sect. A 506, 250 (2003).
  72. CMS Collaboration, Measurement of the inelastic proton-proton cross section at s=13  TeV, J. High Energy Phys. 07 (2018) 161.
  73. R. D. Ball, V. Bertone, F. Cerutti, L. Del Debbio, S. Forte, A. Guffanti, J. I. Latorre, J. Rojo, and M. Ubiali (NNPDF Collaboration), Unbiased global determination of parton distributions and their uncertainties at NNLO and at LO, Nucl. Phys. B855, 153 (2012).
  74. 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).
  75. Y. Gao, A. V. Gritsan, Z. Guo, K. Melnikov, M. Schulze, and N. V. Tran, Spin determination of single-produced resonances at hadron colliders, Phys. Rev. D 81, 075022 (2010).
  76. S. Bolognesi, Y. Gao, A. V. Gritsan, K. Melnikov, M. Schulze, N. V. Tran, and A. Whitbeck, Spin and parity of a single-produced resonance at the LHC, Phys. Rev. D 86, 095031 (2012).
  77. I. Anderson, S. Bolognesi, F. Caola, Y. Gao, A. V. Gritsan, C. B. Martin, K. Melnikov, M. Schulze, N. V. Tran, A. Whitbeck, and Y. Zhou, Constraining anomalous HVV interactions at proton and lepton colliders, Phys. Rev. D 89, 035007 (2014).
  78. A. V. Gritsan, R. Röntsch, M. Schulze, and M. Xiao, Constraining anomalous Higgs boson couplings to the heavy flavor fermions using matrix element techniques, Phys. Rev. D 94, 055023 (2016).
  79. A. V. Gritsan, J. Roskes, U. Sarica, M. Schulze, M. Xiao, and Y. Zhou, New features in the JHU generator framework: constraining Higgs boson properties from on-shell and off-shell production, Phys. Rev. D 102, 056022 (2020).
  80. J. M. Campbell and R. K. Ellis, MCFM for the Tevatron and the LHC, Nucl. Phys. B, Proc. Suppl. 205–206, 10 (2010).
  81. 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.
  82. E. Bagnaschi, G. Degrassi, P. Slavich, and A. Vicini, Higgs production via gluon fusion in the POWHEG approach in the SM and in the MSSM, J. High Energy Phys. 02 (2012) 088.
  83. 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.
  84. G. Luisoni, P. Nason, C. Oleari, and F. Tramontano, HW±/HZ+0 and 1 jet at NLO with the POWHEG BOX interfaced to GoSam and their merging within MiNLO, J. High Energy Phys. 10 (2013) 083.
  85. H. B. Hartanto, B. Jager, L. Reina, and D. Wackeroth, Higgs boson production in association with top quarks in the powheg BOX, Phys. Rev. D 91, 094003 (2015).
  86. J. Alwall, S. Höche, F. Krauss, N. Lavesson, L. Lönnblad, F. Maltoni, M. L. Mangano, M. Moretti, C. G. Papadopoulos, F. Piccinini, S. Schumann, M. Treccani, J. Winter, and M. Worek, Comparative study of various algorithms for the merging of parton showers and matrix elements in hadronic collisions, Eur. Phys. J. C 53, 473 (2007).
  87. R. Frederix and S. Frixione, Merging meets matching in MC@NLO, J. High Energy Phys. 12 (2012) 061.
  88. J. M. Lindert et al., Precise predictions for V + jets dark matter backgrounds, Eur. Phys. J. C 77, 829 (2017).
  89. A. Denner, S. Dittmaier, M. Hecht, and C. Pasold, NLO QCD and electroweak corrections to Z+γ production with leptonic Z-boson decays, J. High Energy Phys. 02 (2016) 057.
  90. M. Grazzini, S. Kallweit, and D. Rathlev, ZZ production at the LHC: Fiducial cross sections and distributions in NNLO QCD, Phys. Lett. B 750, 407 (2015).
  91. J. M. Campbell, R. K. Ellis, and C. Williams, Vector boson pair production at the LHC, J. High Energy Phys. 07 (2011) 018.
  92. J. M. Campbell, R. K. Ellis, and C. Williams, Bounding the Higgs width at the LHC using full analytic results for gg→e−e+μ−μ+, J. High Energy Phys. 04 (2014) 060.
  93. J. M. Campbell and R. K. Ellis, Higgs constraints from vector boson fusion and scattering, J. High Energy Phys. 04 (2015) 030.
  94. CMS Collaboration, Measurements of properties of the Higgs boson decaying into the four-lepton final state in pp collisions at s=13  TeV, J. High Energy Phys. 11 (2017) 047.
  95. CMS Collaboration, Measurements of production cross sections of the Higgs boson in the four-lepton final state in proton proton collisions at s=13  TeV, Eur. Phys. J. C 81, 488 (2021).
  96. CMS Collaboration, Electron and photon reconstruction and identification with the CMS experiment at the CERN LHC, J. Instrum. 16, P05014 (2021).
  97. H. Qu and L. Gouskos, Jet tagging via particle clouds, Phys. Rev. D 101, 056019 (2020).
  98. CMS Collaboration, Mass regression of highly-boosted jets using graph neural networks, CMS Detector Performance Note, Report No. CMS-DP-2021-017, 2021.
  99. CMS Collaboration, Calibration of the mass-decorrelated ParticleNet tagger for boosted bb¯ and cc¯ jets using LHC Run 2 data, CMS Detector Performance Note, Report No. CMS-DP-2022-005, 2022.
  100. CMS Collaboration, Search for nonresonant pair production of highly energetic Higgs bosons decaying to bottom quarks, Phys. Rev. Lett. 131, 041803 (2023).
  101. CMS Collaboration, Performance of the CMS muon detector and muon reconstruction with proton-proton collisions at s=13, J. Instrum. 13, P06015 (2018).
  102. E. Bols, J. Kieseler, M. Verzetti, M. Stoye, and A. Stakia, Jet flavour classification using DeepJet, J. Instrum. 15, P12012 (2020).
  103. CMS Collaboration, Performance of heavy-flavour jet identification in boosted topologies in proton-proton collisions at s=13  TeV, arXiv:2510.10228.
  104. CMS Collaboration, The CMS statistical analysis and combination tool: combine, Comput. Software Big Sci. 8, 19 (2024).
  105. L. Demortier, P values and nuisance parameters, in Statistical Issues for LHC Physics, Proceedings, Workshop, PHYSTAT-LHC, Geneva, Switzerland, 2007 (CERN, Geneva, Switzerland, 2008), p. 23, 10.5170/CERN-2008-001.
  106. R. G. Lomax and D. L. Hahs-Vaughn, Statistical Concepts: A Second Course (Taylor and Francis, London, 2012).
  107. CMS Collaboration, Precision luminosity measurement in proton-proton collisions at s=13  TeV in 2015 and 2016 at CMS, Eur. Phys. J. C 81, 800 (2021).
  108. CMS Collaboration, CMS luminosity measurement for the 2017 data-taking period at s=13  TeV, CMS Physics Analysis Summary, Report No. CMS-PAS-LUM-17-004, 2018, https://cds.cern.ch/record/2621960.
  109. CMS Collaboration, CMS luminosity measurement for the 2018 data-taking period at s=13  TeV, CMS Physics Analysis Summary, Report No. CMS-PAS-LUM-18-002, 2019, https://cds.cern.ch/record/2676164.
  110. G. Cowan, K. Cranmer, E. Gross, and O. Vitells, Asymptotic formulae for likelihood-based tests of new physics, Eur. Phys. J. C 71, 1554 (2011); Eur. Phys. J. C73, 2501(E) (2013).
  111. T. Junk, Confidence level computation for combining searches with small statistics, Nucl. Instrum. Methods Phys. Res., Sect. A 434, 435 (1999).
  112. A. L. Read, Presentation of search results: The CLs technique, J. Phys. G 28, 2693 (2002).
  113. ATLAS Collaboration, A detailed map of Higgs boson interactions by the ATLAS experiment ten years after the discovery, Nature (London) 607, 52 (2022); ATLAS CollaborationNature (London)623, E5 (2023).
  114. CMS Collaboration, A portrait of the Higgs boson by the CMS experiment ten years after the discovery, Nature (London) 607, 60 (2022); CMS CollaborationNature (London)623, E4 (2023).
  115. M. Spira, QCD effects in Higgs physics, Fortschr. Phys. 46, 203 (1998).
  116. G.-y. Huang and S. Zhou, Precise values of running quark and lepton masses in the standard model, Phys. Rev. D 103, 016010 (2021).
  117. R. V. Harlander, S. Liebler, and H. Mantler, SusHi: A program for the calculation of Higgs production in gluon fusion and bottom-quark annihilation in the standard model and the MSSM, Comput. Phys. Commun. 184, 1605 (2013).
  118. R. V. Harlander, Higgs production in heavy quark annihilation through next-to-next-to-leading order QCD, Eur. Phys. J. C 76, 252 (2016).
  119. LHC Higgs Cross Section Working Group, Handbook of LHC Higgs cross sections: 3. Higgs properties, CERN Yellow Rep. Monogr. 4, (2013).
  120. ATLAS Collaboration, Evidence of off-shell Higgs boson production from ZZ leptonic decay channels and constraints on its total width with the ATLAS detector, Phys. Lett. B 846, 138223 (2023).
  121. CMS Collaboration, Measurement of the Higgs boson mass and width using the four-lepton final state in proton-proton collisions at 13 TeV, Phys. Rev. D 111, 092014 (2025).
  122. CMS data availability statement, 10.7483/OPENDATA.CMS.1BNU.8V1W.

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation