FRACTIONAL A. C. JOSEPHSON EFFECT AS EVIDENCE OF TOPOLOGICAL HINGE STATES INADIRAC SEMIMETAL NiTe2

PII
S0044451024110117-1
DOI
10.31857/S0044451024110117
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 166 / Issue number 5
Pages
688-695
Abstract
Журнал экспериментальной и теоретической физики, FRACTIONAL A. C. JOSEPHSON EFFECT AS EVIDENCE OF TOPOLOGICAL HINGE STATES INADIRAC SEMIMETAL NiTe2
Keywords
Date of publication
26.07.2025
Number of purchasers
0
Views
47

References

  1. 1. B. A. Volkov and O. A. Pankratov, JETP Lett. 42, 178 (1985).
  2. 2. M. Z. Hasan and C. L. Kane, Rev. Mod. Phys. 82, 3045 (2010).
  3. 3. X.-L. Qi and S.-C. Zhang, Rev. Mod. Phys. 83, 1057 (2011).
  4. 4. A. Bansil, H. Lin, and T. Das, Rev. Mod. Phys. 88, 021004 (2016).
  5. 5. C.-K. Chiu, J. C. Teo, A. P. Schnyder, and S. Ryu, Rev. Mod. Phys. 88, 035005 (2016).
  6. 6. N. P. Armitage, E. J. Mele, and A. Vishwanath, Rev. Mod. Phys. 90, 15001 (2018).
  7. 7. J. H. Lee, G.-H. Lee, J. Park, J. Lee, S.-G. Nam, Y.-S. Shin, J. S. Kim, and H.-J. Lee, Nano Lett. 14, 5029 (2014).
  8. 8. O. O. Shvetsov, A. Kononov, A. V. Timonina, N.N.Kolesnikov, and E. V. Deviatov, JETP Lett. 107, 774 (2018).
  9. 9. O. O. Shvetsov, A. Kononov, A. V. Timonina, N.N.Kolesnikov, and E. V. Deviatov, EP 124, 47003 (2018).
  10. 10. C. Huang, B. T. Zhou, H. Zhang, B. Yang, R. Liu, H. Wang, Y. Wan, K. Huang, Z. Liao, E. Zhang, S. Liu, Q. Deng, Y. Chen, X. Han, J. Zou, X. Lin, Z. Han, Y. Wang, K. Tuen Law, and F. Xiu, Nat. Comm. 10, 2217 (2019).
  11. 11. O. O. Shvetsov, V. D. Esin, Yu. S. Barash, A.V.Timonina, N. N. Kolesnikov, and E. V. Deviatov, Phys. Rev. B 101, 035304 (2020).
  12. 12. Y. Wang, S. Yang, P. K. Sivakumar, B.R.Ortiz, S.M. L.Teicher, H. Wu, A. K. Srivastava, C. Garg, D. Liu, S. S. P. Parkin, E. S. Toberer, T. McQueen, S. D. Wilson, and M.N.Ali, arXiv:2012.05898. Sci.Adv.9, eadg7269 (2023), DOI:10.1126/sciadv.adg7269
  13. 13. Cai-Zhen Li, Chuan Li, Li-Xian Wang, Shuo Wang, Zhi-Min Liao, Alexander Brinkman, and Da-Peng Yu, Phys. Rev. B 97, 115446 (2018), DOI:10.1103/PhysRevB.97.115446
  14. 14. S. Hart, H. Ren, T. Wagner, P. Leubner, M.Mühlbauer, C. Brüe, H. Buhmann, L.W.Molenkamp, and A. Yacoby, Nature Physics 10, 638 (2014), DOI:10.1038/nphys3036
  15. 15. V. S. Pribiag, A. J. A. Beukman, Fanming Qu, M.C.Cassidy, C. Charpentier, W. Wegscheider, and L. P. Kouwenhoven, Nature Nanotechnology 10, 593 (2015).
  16. 16. W. Yu, W. Pan, D. L. Medlin, M. A. Rodriguez, S.R. Lee, Z. Bao, and F. Zhang, Phys. Rev. Lett. 120, 177704 (2018), DOI:10.1103/PhysRevLett.120.177704
  17. 17. R. A. Snyder, C. J. Trimble, C. C. Rong, P. A. Folkes, P. J. Taylor, and J.R.Williams, Phys. Rev. Lett. 121, 097701 (2018), DOI:10.1103/PhysRevLett.121.097701
  18. 18. B. J. Wieder, Zhijun Wang, J. Cano, B. Bradlyn, and B. A. Bernevig, Nature Commun. 11, 627 (2020), DOI:10.1038/s41467-020-14443-5
  19. 19. W. A. Benalcazar, B. A. Bernevig, and T. L.Hughes, Phys. Rev. B 96, 245115 (2017).
  20. 20. D. Calugaru, V. Juricic, and B. Roy, Phys. Rev. B 99, 041301 (2019).
  21. 21. Cai-Zhen Li, An-Qi Wang, Chuan Li, Wen-Zhuang Zheng, A. Brinkman, Da-Peng Yu, and Zhi-Min, Liao Phys. Rev. Lett. 124, 156601 (2020)
  22. 22. B. Ghosh, D. Mondal, C.-N. Kuo, C. S. Lue, J.Nayak, J. Fujii, I. Vobornik, A. Politano, and A. Agarwal, Phys. Rev. B 100, 195134 (2019).
  23. 23. S. Mukherjee, S. W. Jung, S. F. Weber, C.Xu, D.Qian, X. Xu, P. K. Biswas, T. K. Kim, L.C.Chapon, M. D. Watson, J. B. Neaton, and C. Cacho, Sci. Rep. 10, 12957 (2020)
  24. 24. B. Pal, A. Chakraborty, P. K. Sivakumar, M.Davydova, A. K. Gopi, A. K. Pandeya, J. A. Krieger, Yang Zhang, M. Date, Sailong Ju, Noah Yuan, N.B.M. Schröter, Liang Fu, and S. S. P. Parkin, Nat. Phys. 18, 1228 (2022), DOI:10.1038/s41567022-01699-5
  25. 25. V. D. Esin, O. O. Shvetsov, A. V. Timonina, N.N. Kolesnikov, and E. V. Deviatov, Nanomaterials 12, 4114 (2022), DOI:10.3390/nano12234114
  26. 26. Tian Le, Ruihan Zhang, Changcun Li, Ruiyang Jiang, Haohao Sheng, Linfeng Tu, Xuewei Cao, Zhaozheng Lyu, Jie Shen, Guangtong Liu, Fucai Liu, Zhijun Wang, Li Lu, and Fanming Qu, Nature Commun. 2785 (2024), arXiv:2303.05041, DOI:10.1038/s41467-024-47103-z
  27. 27. C. Xu, B. Li, W. Jiao, W. Zhou, B. Qian, R. Sankar, N. D. Zhigadlo, Y. Qi, D. Qian, F.-C.Chou, and X. Xu, Chem. Mater. 30, 4823 (2018).
  28. 28. Q. Liu, F. Fei, B. Chen, X. Bo, B. Wei, S. Zhang, M. Zhang, F. Xie, M. Naveed, X. Wan, F. Song, and B. Wang, Phys. Rev. B 99, 155119 (2019).
  29. 29. Z. Feng, J. Si, T. Li, H. Dong, C. Xu, J.Yang, Z. Zhang, K. Wang, H. Wu, Q. Hou, J.-J. Xing, S.Wan, S. Li, W. Deng, J. Feng, A. Pal, F.Chen, S.Hu, J.-Y. Ge, C. Dong, S. Wang, W. Ren, S.Cao, Y. Liu, X. Xu, J. Zhang, B. Chen, and N.-C.Yeh, Materials Today Phys. 17, 100339 (2021).
  30. 30. O. O. Shvetsov, Yu. S. Barash, A. V. Timonina, N. N. Kolesnikov, and E. V. Deviatov, JETP Let. 115, 267 (2022), DOI:10.1134/S0021364022100101
  31. 31. V. D. Esin, D. Yu. Kazmin, Yu. S. Barash, A. V. Timonina, N. N. Kolesnikov, and E.V.Deviatov, JETP Lett. 118, 847 (2023), DOI:10.1134/S0021364023603329
  32. 32. I. O. Kulik, Sov. Phys. JETP 30, 944 (1970).
  33. 33. P. Dubos, H. Courtois, B. Pannetier, F. K. Wilhelm, A. D. Zaikin, and G. Schön, Phys. Rev. B 63, 064502 (2001)
  34. 34. A. M. Toxen, Phys. Rev. 123, 442 (1961).
  35. 35. P. Scharnhorst, Phys. Rev. B 1, 4295 (1970).
  36. 36. K. K. Likharev, Rev. Mod. Phys. 51, 101 (1979).
  37. 37. I. Sochnikov, L. Maier, C. A.Watson, J. R. Kirtley, C. Gould, G. Tkachov, E. M. Hankiewicz, C.Brune, H. Buhmann, L.W.Molenkamp, and K.A.Moler, Phys. Rev. Lett. 114, 066801 (2015)
  38. 38. E. Bocquillon, J. Wiedenmann, R. S. Deacon, T.M.Klapwijk, H. Buhmann, and L.W.Molenkamp, Microwave Studies of the Fractional Josephson Effect, HgTe-Based Josephson Junctions, in: Topological Matter, ed. by D. Bercioux, J. Cayssol, M. Vergniory, and M. Reyes Calvo, Springer Series in Solid-State Sciences, Vol. 190, Springer (2018).
  39. 39. C. Vanneste, C. C. Chi, W. J. Gallagher, A.W.Kleinsasser, S. I. Raider, and R. L. Sandstrom, J. Appl. Phys. 64, 242 (1988), DOI:10.1063/1.341471
  40. 40. R. C. Dinsmore III, Myung-Ho Bae, and A.Bezryadin, Appl. Phys. Lett. 93, 192505 (2008), DOI:10.1063/1.3012360
  41. 41. A. Valizadeh, M. R. Kolahchi, and J. P. Straley, J. Nonlinear Math. Phys. 15, 407 (2008).
  42. 42. S. M. Frolov, D. J. Van Harlingen, V. V. Bolginov, V. A. Oboznov, and V. V. Ryazanov, Phys. Rev. B 74, 020503 (2006).
  43. 43. L. Chen, P. Chen, and C. K. Ong, Appl. Phys. Lett. 80, 1025 (2002).
  44. 44. A. Leblanc, C. Tangchingchai, Z. Sadre Momtaz, E. Kiyooka, J.-M. Hartmann, F. Gustavo, J.-L.Thomassin, B. Brun, V. Schmitt, S. Zihlmann, R. Maurand, E. Dumur, S. De Franceschi, and F. Lefloch, arxiv:2405.14695
  45. 45. S. Messelot, N. Aparicio, E. de Seze, E. Eyraud, J. Coraux, K. Watanabe, T. Taniguchi, and J. Renard, arxiv:2405.13642
  46. 46. L. Banszerus, C. W. Andersson, W. Marshall, T. Lindemann, M. J. Manfra, C. M. Marcus, and S. Vaitiekenas, arxiv:2406.20082
QR
Translate