- Letter
- Open Access
Distinguishing trivial and topological zero-energy states in long nanowire junctions
Phys. Rev. B 104, L020501 – Published 1 July, 2021
DOI: https://doi.org/10.1103/PhysRevB.104.L020501
Abstract
The emergence of zero-energy states in nontopological superconductors represents an inevitable problem that obscures the proper identification of zero-energy Majorana bound states (MBSs) and prevents their use as topologically protected qubits. In this Research Letter we investigate long superconductor-normal-superconductor junctions where trivial zero-energy states, robust over a large range of parameters, appear as a result of helicity and confinement in the normal region. We demonstrate that both equilibrium supercurrents and critical currents are sensitive to variations in the length of the superconductor regions in the topological phase hosting MBSs but, remarkably, no such length dependence exists when robust, but trivial, zero-energy states are present. This strikingly different response originates from the nonlocal nature of the MBSs, and we therefore propose it as a simple protocol for distinguishing between trivial and topological zero-energy states.
Physics Subject Headings (PhySH)
- Andreev reflection
- Ballistic transport
- Josephson effect
- Majorana bound states
- Majorana fermions
- Proximity effect
- Quantum transport
- Rashba coupling
- Spin-singlet pairing
- Spin-triplet pairing
- Superconductivity
- Topological phases of matter
- Topological superconductors
- Josephson junctions
- Low-temperature superconductors
- Nanowires
- Bogoliubov-de Gennes equations
- Finite-element method
- Methods in superconductivity
Article Text
Supplemental Material
References (101)
- R. Aguado, Riv. Nuovo Cimento 40, 523 (2017).
- R. M. Lutchyn, E. P. Bakkers, L. P. Kouwenhoven, P. Krogstrup, C. M. Marcus, and Y. Oreg, Nat. Rev. Mater. 3, 52 (2018).
- H. Zhang, D. E. Liu, M. Wimmer, and L. P. Kouwenhoven, Nat. Commun. 10, 5128 (2019).
- C. Beenakker, SciPost Phys. Lect. Notes 15 (2020).
- Y. Oreg and F. von Oppen, Annu. Rev. Condens. Matter Phys. 11, 397 (2020).
- R. Aguado, Appl. Phys. Lett. 117, 240501 (2020).
- A. Y. Kitaev, Phys.-Usp. 44, 131 (2001).
- D. A. Ivanov, Phys. Rev. Lett. 86, 268 (2001).
- C. Nayak, S. H. Simon, A. Stern, M. Freedman, and S. Das Sarma, Rev. Mod. Phys. 80, 1083 (2008).
- S. D. Sarma, M. Freedman, and C. Nayak, npj Quantum Inf. 1, 15001 (2015).
- J. Alicea, Y. Oreg, G. Refael, F. Von Oppen, and M. P. Fisher, Nat. Phys. 7, 412 (2011).
- D. Aasen, M. Hell, R. V. Mishmash, A. Higginbotham, J. Danon, M. Leijnse, T. S. Jespersen, J. A. Folk, C. M. Marcus, K. Flensberg, and J. Alicea, Phys. Rev. X 6, 031016 (2016).
- R. M. Lutchyn, J. D. Sau, and S. Das Sarma, Phys. Rev. Lett. 105, 077001 (2010).
- Y. Oreg, G. Refael, and F. von Oppen, Phys. Rev. Lett. 105, 177002 (2010).
- C. J. Bolech and E. Demler, Phys. Rev. Lett. 98, 237002 (2007).
- K. T. Law, P. A. Lee, and T. K. Ng, Phys. Rev. Lett. 103, 237001 (2009).
- K. Flensberg, Phys. Rev. B 82, 180516(R) (2010).
- V. Mourik, K. Zuo, S. Frolov, S. Plissard, E. Bakkers, and L. Kouwenhoven, Science 336, 1003 (2012).
- A. P. Higginbotham, S. M. Albrecht, G. Kirsanskas, W. Chang, F. Kuemmeth, P. Krogstrup, T. S. J. J. Nygård, K. Flensberg, and C. M. Marcus, Nat. Phys. 11, 1017 (2015).
- M. T. Deng, S. Vaitiekėnas, E. B. Hansen, J. Danon, M. Leijnse, K. Flensberg, J. Nygård, P. Krogstrup, and C. M. Marcus, Science 354, 1557 (2016).
- S. M. Albrecht, A. P. Higginbotham, M. Madsen, F. Kuemmeth, T. S. Jespersen, J. Nygård, P. Krogstrup, and C. M. Marcus, Nature (London) 531, 206 (2016).
- H. Zhang, Ö. Gül, S. Conesa-Boj, K. Zuo, V. Mourik, F. K. de Vries, J. van Veen, D. J. van Woerkom, M. P. Nowak, M. Wimmer, D. Car, S. Plissard, E. P. A. M. Bakkers, M. Quintero-Pérez, S. Goswami, K. Watanabe, T. Taniguchi, and L. P. Kouwenhoven, Nat. Commun. 8, 16025 (2017).
- H. J. Suominen, M. Kjaergaard, A. R. Hamilton, J. Shabani, C. J. Palmstrøm, C. M. Marcus, and F. Nichele, Phys. Rev. Lett. 119, 176805 (2017).
- F. Nichele, A. C. C. Drachmann, A. M. Whiticar, E. C. T. O'Farrell, H. J. Suominen, A. Fornieri, T. Wang, G. C. Gardner, C. Thomas, A. T. Hatke, P. Krogstrup, M. J. Manfra, K. Flensberg, and C. M. Marcus, Phys. Rev. Lett. 119, 136803 (2017).
- Ö. Gül, H. Zhang, J. D. S. Bommer, M. W. A. de Moor, D. Car, S. R. Plissard, E. P. A. M. Bakkers, A. Geresdi, K. Watanabe, T. Taniguchi, and L. P. Kouwenhoven, Nat. Nanotechnol. 13, 192 (2018).
- G. Kells, D. Meidan, and P. W. Brouwer, Phys. Rev. B 86, 100503(R) (2012).
- E. Prada, P. San-Jose, and R. Aguado, Phys. Rev. B 86, 180503(R) (2012).
- J. Cayao, E. Prada, P. San-Jose, and R. Aguado, Phys. Rev. B 91, 024514 (2015).
- P. San-José, J. Cayao, E. Prada, and R. Aguado, Sci. Rep. 6, 21427 (2016).
- C.-X. Liu, J. D. Sau, T. D. Stanescu, and S. Das Sarma, Phys. Rev. B 96, 075161 (2017).
- A. Ptok, A. Kobiałka, and T. Domański, Phys. Rev. B 96, 195430 (2017).
- C. Fleckenstein, F. Domínguez, N. Traverso Ziani, and B. Trauzettel, Phys. Rev. B 97, 155425 (2018).
- C. Reeg, O. Dmytruk, D. Chevallier, D. Loss, and J. Klinovaja, Phys. Rev. B 98, 245407 (2018).
- J. Chen, B. D. Woods, P. Yu, M. Hocevar, D. Car, S. R. Plissard, E. P. A. M. Bakkers, T. D. Stanescu, and S. M. Frolov, Phys. Rev. Lett. 123, 107703 (2019).
- T. D. Stanescu and S. Tewari, Phys. Rev. B 100, 155429 (2019).
- T. Dvir, M. Aprili, C. H. L. Quay, and H. Steinberg, Phys. Rev. Lett. 123, 217003 (2019).
- A. Vuik, B. Nijholt, A. R. Akhmerov, and M. Wimmer, SciPost Phys. 7, 61 (2019).
- J. Avila, F. Peñaranda, E. Prada, P. San-Jose, and R. Aguado, Commun. Phys. 2, 133 (2019).
- H. Pan and S. Das Sarma, Phys. Rev. Research 2, 013377 (2020).
- C. Jünger, R. Delagrange, D. Chevallier, S. Lehmann, K. A. Dick, C. Thelander, J. Klinovaja, D. Loss, A. Baumgartner, and C. Schönenberger, Phys. Rev. Lett. 125, 017701 (2020).
- D. Razmadze, E. C. T. O'Farrell, P. Krogstrup, and C. M. Marcus, Phys. Rev. Lett. 125, 116803 (2020).
- O. Dmytruk, D. Loss, and J. Klinovaja, Phys. Rev. B 102, 245431 (2020).
- P. Yu, J. Chen, M. Gomanko, G. Badawy, E. P. A. M. Bakkers, K. Zuo, V. Mourik, and S. Frolov, Nat. Phys. 17, 482 (2021).
- M. Valentini, F. Peñaranda, A. Hofmann, M. Brauns, R. Hauschild, P. Krogstrup, P. San-Jose, E. Prada, R. Aguado, and G. Katsaros, arXiv:2008.02348.
- E. Prada, P. San-Jose, M. W. de Moor, A. Geresdi, E. J. Lee, J. Klinovaja, D. Loss, J. Nygård, R. Aguado, and L. P. Kouwenhoven, Nat. Rev. Phys. 2, 575 (2020).
- M.-T. Deng, S. Vaitiekėnas, E. Prada, P. San-Jose, J. Nygård, P. Krogstrup, R. Aguado, and C. M. Marcus, Phys. Rev. B 98, 085125 (2018).
- R. V. Mishmash, D. Aasen, A. P. Higginbotham, and J. Alicea, Phys. Rev. B 93, 245404 (2016).
- J. Liu, J. Song, Q.-F. Sun, and X. C. Xie, Phys. Rev. B 96, 195307 (2017).
- T. O. Rosdahl, A. Vuik, M. Kjaergaard, and A. R. Akhmerov, Phys. Rev. B 97, 045421 (2018).
- C. Schrade and L. Fu, arXiv:1809.06370.
- C. Moore, T. D. Stanescu, and S. Tewari, Phys. Rev. B 97, 165302 (2018).
- C.-X. Liu, J. D. Sau, and S. Das Sarma, Phys. Rev. B 97, 214502 (2018).
- M. Hell, K. Flensberg, and M. Leijnse, Phys. Rev. B 97, 161401(R) (2018).
- L. S. Ricco, M. de Souza, M. S. Figueira, I. A. Shelykh, and A. C. Seridonio, Phys. Rev. B 99, 155159 (2019).
- K. Yavilberg, E. Ginossar, and E. Grosfeld, Phys. Rev. B 100, 241408(R) (2019).
- O. A. Awoga, J. Cayao, and A. M. Black-Schaffer, Phys. Rev. Lett. 123, 117001 (2019).
- J. Schulenborg and K. Flensberg, Phys. Rev. B 101, 014512 (2020).
- G. Zhang and C. Spånslätt, Phys. Rev. B 102, 045111 (2020).
- A. Schuray, M. Rammler, and P. Recher, Phys. Rev. B 102, 045303 (2020).
- A. Grabsch, Y. Cheipesh, and C. W. J. Beenakker, Adv. Quantum Technol. 3, 1900110 (2020).
- H. Pan, J. D. Sau, and S. D. Sarma, Phys. Rev. B 103, 014513 (2021).
- D. Liu, Z. Cao, X. Liu, H. Zhang, and D. E. Liu, arXiv:2009.09996.
- J. Danon, A. B. Hellenes, E. B. Hansen, L. Casparis, A. P. Higginbotham, and K. Flensberg, Phys. Rev. Lett. 124, 036801 (2020).
- L. S. Ricco, J. E. Sanches, Y. Marques, M. de Souza, M. S. Figueira, I. A. Shelykh, and A. C. Seridonio, arXiv:2004.14182.
- M. Thamm and B. Rosenow, Phys. Rev. Research 3, 023221 (2021).
- W. Chen, J. Wang, Y. Wu, J. Liu, and X. C. Xie, arXiv:2005.00735.
- P. Středa and P. Šeba, Phys. Rev. Lett. 90, 256601 (2003).
- J. Cayao, A. M. Black-Schaffer, E. Prada, and R. Aguado, Beilstein J. Nanotechnol. 9, 1339 (2018).
- D. Rainis and D. Loss, Phys. Rev. B 90, 235415 (2014).
- J. Kammhuber, M. C. Cassidy, F. Pei, M. P. Nowak, A. Vuik, Ö. Gül, D. Car, S. Plissard, E. Bakkers, M. Wimmer, and L. P. Kouwenhoven, Nat. Commun. 8, 478 (2017).
- J. Sun, R. S. Deacon, R. Wang, J. Yao, C. M. Lieber, and K. Ishibashi, Nano Lett. 18, 6144 (2018).
- J. C. Estrada Saldaña, Y.-M. Niquet, J.-P. Cleuziou, E. J. H. Lee, D. Car, S. R. Plissard, E. P. A. M. Bakkers, and S. De Franceschi, Nano Lett. 18, 2282 (2018).
- J. Sun, R. S. Deacon, X. Liu, J. Yao, and K. Ishibashi, Appl. Phys. Lett. 117, 052403 (2020).
- J. Klinovaja and D. Loss, Phys. Rev. B 86, 085408 (2012).
- S. Das Sarma, J. D. Sau, and T. D. Stanescu, Phys. Rev. B 86, 220506(R) (2012).
- D. Rainis, L. Trifunovic, J. Klinovaja, and D. Loss, Phys. Rev. B 87, 024515 (2013).
- J. Cayao, P. San-Jose, A. M. Black-Schaffer, R. Aguado, and E. Prada, Phys. Rev. B 96, 205425 (2017).
- A. Zagoskin, Quantum Theory of Many-Body Systems: Techniques and Applications (Springer, New York, 2014).
- C. W. J. Beenakker, D. I. Pikulin, T. Hyart, H. Schomerus, and J. P. Dahlhaus, Phys. Rev. Lett. 110, 017003 (2013).
- A. Murani, A. Chepelianskii, S. Guéron, and H. Bouchiat, Phys. Rev. B 96, 165415 (2017).
- D. I. Pikulin and Y. V. Nazarov, Phys. Rev. B 86, 140504(R) (2012).
- P. San-Jose, E. Prada, and R. Aguado, Phys. Rev. Lett. 108, 257001 (2012).
- Y. Peng, F. Pientka, E. Berg, Y. Oreg, and F. von Oppen, Phys. Rev. B 94, 085409 (2016).
- E. J. H. Lee, X. Jiang, M. Houzet, R. Aguado, C. M. Lieber, and S. D. Franceschi, Nat. Nanotechnol. 9, 79 (2014).
- Y.-J. Doh, J. A. van Dam, A. L. Roest, E. P. A. M. Bakkers, L. P. Kouwenhoven, and S. De Franceschi, Science 309, 272 (2005).
- J.-D. Pillet, C. H. L. Quay, P. Morfin, C. Bena, A. L. Yeyati, and P. Joyez, Nat. Phys. 6, 965 (2010).
- H. A. Nilsson, P. Samuelsson, P. Caroff, and H. Q. Xu, Nano Lett. 12, 228 (2012).
- W. Chang, V. E. Manucharyan, T. S. Jespersen, J. Nygård, and C. M. Marcus, Phys. Rev. Lett. 110, 217005 (2013).
- M. Hays, G. de Lange, K. Serniak, D. J. van Woerkom, D. Bouman, P. Krogstrup, J. Nygård, A. Geresdi, and M. H. Devoret, Phys. Rev. Lett. 121, 047001 (2018).
- L. Tosi, C. Metzger, M. F. Goffman, C. Urbina, H. Pothier, S. Park, A. L. Yeyati, J. Nygård, and P. Krogstrup, Phys. Rev. X 9, 011010 (2019).
- C. Beenakker, in Transport Phenomena in Mesoscopic Systems: Proceedings of the 14th Taniguchi Symposium, Shima, Japan, November 10–14, 1991, Springer Series in Solid-State Sciences Vol. 109 (Springer, New York, 1992), p. 235.
- P. San-José, J. Cayao, E. Prada, and R. Aguado, New J. Phys. 15, 075019 (2013).
- P. San-Jose, E. Prada, and R. Aguado, Phys. Rev. Lett. 112, 137001 (2014).
- See Supplemental Material at http://link.aps.org/supplemental/10.1103/PhysRevB.104.L020501 for an alternative way to test nonlocality in phase-biased supercurrents at fixed lengths of the superconducting regions, which also includes Refs. [99, 100, 101].
- J. Tiira, E. Strambini, M. Amado, S. Roddaro, P. San-Jose, R. Aguado, F. S. Bergeret, D. Ercolani, L. Sorba, and F. Giazotto, Nat. Commun. 8, 14984 (2017).
- K. Zuo, V. Mourik, D. B. Szombati, B. Nijholt, D. J. van Woerkom, A. Geresdi, J. Chen, V. P. Ostroukh, A. R. Akhmerov, S. R. Plissard, D. Car, E. P. A. M. Bakkers, D. I. Pikulin, L. P. Kouwenhoven, and S. M. Frolov, Phys. Rev. Lett. 119, 187704 (2017).
- M. Kjaergaard, H. J. Suominen, M. P. Nowak, A. R. Akhmerov, J. Shabani, C. J. Palmstrøm, F. Nichele, and C. M. Marcus, Phys. Rev. Appl. 7, 034029 (2017).
- F. Nichele, E. Portolés, A. Fornieri, A. M. Whiticar, A. C. C. Drachmann, S. Gronin, T. Wang, G. C. Gardner, C. Thomas, A. T. Hatke, M. J. Manfra, and C. M. Marcus, Phys. Rev. Lett. 124, 226801 (2020).
- Y. Liu, S. Vaitiekenas, S. Martí-Sánchez, C. Koch, S. Hart, Z. Cui, T. Kanne, S. A. Khan, R. Tanta, S. Upadhyay, M. Espiñeira Cachaza, C. M. Marcus, J. Arbiol, K. A. Moler, and P. Krogstrup, Nano Lett. 20, 456 (2020).
- Z. Yang, B. Heischmidt, S. Gazibegovic, G. Badawy, D. Car, P. A. Crowell, E. P. Bakkers, and V. S. Pribiag, Nano Lett. 20, 3232 (2020).
- S. Vaitiekėnas, Y. Liu, P. Krogstrup, and C. Marcus, Nat. Phys. 17, 43 (2021).