Please wait a minute...
Frontiers of Physics

ISSN 2095-0462

ISSN 2095-0470(Online)

CN 11-5994/O4

Postal Subscription Code 80-965

2018 Impact Factor: 2.483

Front. Phys.    2011, Vol. 6 Issue (4) : 398-409    https://doi.org/10.1007/s11467-011-0214-z
MINI-REVIEW ARTICLE
Vortex lattices in type-II superconductors studied by small-angle neutron scattering
Morten Ring Eskildsen()
Department of Physics, University of Notre Dame, Notre Dame, IN 46556, USA
 Download: PDF(719 KB)   HTML
 Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks
Abstract

Here we review recent small-angle scattering studies of the vortex lattice in a range of type-II superconductors carried out by our group. Emphasis is placed on providing examples of the kind of information which can be obtained by such measurements, focusing in particular on studies of the vortex lattice structure and form factor in LuNi2B2C, TmNi2B2C, CeCoIn5 and Ba(Fe0.93Co0.07)2As2.

Keywords superconductivity      vortex lattice      small-angle neutron scattering      borocarbides      pnictides      CeCoIn5     
Corresponding Author(s): Eskildsen Morten Ring,Email:eskildsen@nd.edu   
Issue Date: 05 December 2011
 Cite this article:   
Morten Ring Eskildsen. Vortex lattices in type-II superconductors studied by small-angle neutron scattering[J]. Front. Phys. , 2011, 6(4): 398-409.
 URL:  
https://academic.hep.com.cn/fop/EN/10.1007/s11467-011-0214-z
https://academic.hep.com.cn/fop/EN/Y2011/V6/I4/398
1 A. Maisuradze, R. Khasanov, A. Shengelaya, and H. Keller, J. Phys.: Condens. Matter , 2009, 21(7): 075701
doi: 10.1088/0953-8984/21/7/075701
2 J. E. Sonier, W. Huang, C. V. Kaiser, C. Cochrane, V. Pacradouni, S. A. Sabok-Sayr, M. D. Lumsden, B. C. Sales, M. A. McGuire, A. S. Sefat, and D. Mandrus, Phys. Rev. Lett. , 2011, 106(12): 127002
doi: 10.1103/PhysRevLett.106.127002
3 P. Das, J. S. White, A. T. Holmes, E. M. Forgan, A. D. Bianchi, M. Kenzelmann, M. Zolliker, S. Gerber, J. L. Gavilano, E. D. Bauer, J. L. Sarrao, C. Petrovic, and M. R. Eskildsen, to be published
4 J. S. White, V. Hinkov, R. W. Heslop, R. J. Lycett, E. M. Forgan, C. Bowell, S. Str?ssle, A. B. Abrahamsen, M. Laver, C. D. Dewhurst, J. Kohlbrecher, J. L. Gavilano, J. Mesot, B. Keimer, and A. Erb, Phys. Rev. Lett. , 2009, 102(9): 097001
doi: 10.1103/PhysRevLett.102.097001
5 A. S. Cameron, in preparation
6 J.M. Densmore, P. Das, K. Rovira, T. D. Blasius, L. DeBeer-Schmitt, N. Jenkins, D. M. Paul, C. D. Dewhurst, S. L. Bud’ko, P. C. Canfield, and M. R. Eskildsen, Phys. Rev. B , 2009, 79(17): 174522
doi: 10.1103/PhysRevB.79.174522
7 A. A. Abrikosov, Sov. Phys. JETP , 1957, 5: 1174
8 W. H. Kleiner, S. H. Autler, and L. M. Roth, Phys. Rev. A , 1964, 133(5A): 1226
9 M. Franz, C. Kallin, P. I. Soininen, A. J. Berlinsky, and A. L. Fetter, Phys. Rev. B , 1996, 53(9): 5795
doi: 10.1103/PhysRevB.53.5795
10 V. G. Kogan, M. Bullock, and B. Harmon, Phys. Rev. B , 1997, 55: R8693
doi: 10.1103/PhysRevB.55.R8693
11 M. Ichioka, A. Hasegawa, and K. Machida, Phys. Rev. B , 1999, 59(13): 8902
doi: 10.1103/PhysRevB.59.8902
12 N. Nakai, P. Miranovi?M. Ichioka, and K. Machida, Phys. Rev. Lett. , 2002, 89(23): 237004
doi: 10.1103/PhysRevLett.89.237004
13 K. M. Suzuki, K. Inoue, P. Miranovic, M. Ichioka, and K. Machida, J. Phys. Soc. Jpn. , 2010, 79(1): 013702
doi: 10.1143/JPSJ.79.013702
14 U. Yaron, P. L. Gammel, A. P. Ramirez, D. A. Huse, D. J. Bishop, A. I. Goldman, C. Stassis, P. C. Canfield, K. Mortensen, and M. R. Eskildsen, Nature , 1996, 382(6588): 236
doi: 10.1038/382236a0
15 M. R. Eskildsen, P. L. Gammel, B. P. Barber, U. Yaron, A. P. Ramirez, D. A. Huse, D. J. Bishop, C. Bolle, C. M. Lieber, S. Oxx, S. Sridhar, N. H. Andersen, K. Mortensen, and P. C. Canfield, Phys. Rev. Lett. , 1997, 78(10): 1968
doi: 10.1103/PhysRevLett.78.1968
16 Y. DeWilde, M. Iavarone, U. Welp, V. Metlushko, A. E. Koshelev, I. Aranson, G. W. Crabtree, and P. C. Canfield, Phys. Rev. Lett. , 1997, 78(22): 4273
doi: 10.1103/PhysRevLett.78.4273
17 M. Yethiraj, D. M. Paul, C. V. Tomy, and E. M. Forgan, Phys. Rev. Lett. , 1997, 78(25): 4849
doi: 10.1103/PhysRevLett.78.4849
18 D. M. Paul, C. V. Tomy, C. M. Aegerter, R. Cubitt, S. H. Lloyd, E. M. Forgan, S. L. Lee, and M. Yethiraj, Phys. Rev. Lett. , 1998, 80(7): 1517
doi: 10.1103/PhysRevLett.80.1517
19 M. Yethiraj, D. M. Paul, C. V. Tomy, and J. R. Thompson, Phys. Rev. B , 1998, 58(22): 14767
doi: 10.1103/PhysRevB.58.R14767
20 P. L. Gammel, D. J. Bishop, M. R. Eskildsen, K. Mortensen, N. H. Andsersen, I. R. Fisher, K. O. Cheon, P. C. Canfield, and V. G. Kogan, Phys. Rev. Lett. , 1999, 82(20): 4082
doi: 10.1103/PhysRevLett.82.4082
21 S. J. Levett, C. D. Dewhurst, and D. M. Paul, Phys. Rev. B , 2002, 66(1): 014515
doi: 10.1103/PhysRevB.66.014515
22 C. D. Dewhurst, S. J. Levett, and D. M. Paul, Phys. Rev. B , 2005, 72(1): 014542
doi: 10.1103/PhysRevB.72.014542
23 M. Yethiraj, D. K. Christen, D. M. Paul, P. Miranovic, and J. R. Thompson, Phys. Rev. Lett. , 1999, 82(25): 5112
doi: 10.1103/PhysRevLett.82.5112
24 M. Yethiraj, D. K. Christen, A. A. Gapud, D. M. Paul, S. J. Crowe, C. D. Dewhurst, R. Cubitt, L. Porcar, and A. Gurevich, Phys. Rev. B , 2005, 72(6): 060504
doi: 10.1103/PhysRevB.72.060504
25 R. Gilardi, J. Mesot, A. Drew, U. Divakar, S. L. Lee, E. M. Forgan, O. Zaharko, K. Conder, V. K. Aswal, C. D. Dewhurst, R. Cubitt, N. Momono, and M. Oda, Phys. Rev. Lett. , 2002, 88(21): 217003
doi: 10.1103/PhysRevLett.88.217003
26 M. R. Eskildsen, C. D. Dewhurst, B. W. Hoogenboom, C. Petrovic, and P. C. Canfield, Phys. Rev. Lett. , 2003, 90(18): 187001
doi: 10.1103/PhysRevLett.90.187001
27 L. DeBeer-Schmitt, C. D. Dewhurst, B. W. Hoogenboom, C. Petrovic, and M. R. Eskildsen, Phys. Rev. Lett. , 2006, 97(12): 127001
doi: 10.1103/PhysRevLett.97.127001
28 S. P. Brown, D. Charalambous, E. C. Jones, E. M. Forgan, P. G. Kealey, A. Erb, and J. Kohlbrecher, Phys. Rev. Lett. , 2004, 92(6): 067004
doi: 10.1103/PhysRevLett.92.067004
29 R. Gilardi, J. Mesot, S. P. Brown, E. M. Forgan, A. Drew, S. L. Lee, R. Cubitt, C. D. Dewhurst, T. Uefuji, and K. Yamada, Phys. Rev. Lett. , 2004, 93(21): 217001
doi: 10.1103/PhysRevLett.93.217001
30 R. Cubitt, E. M. Forgan, G. Yang, S. L. Lee, D. Paul, H. A. Mook, M. Yethiraj, P. H. Kes, T. W. Li, A. A. Menovsky, Z. Tarnawski, and K. Mortensen, Nature , 1993, 365(6445): 407
doi: 10.1038/365407a0
31 A. Pautrat, C. Simon, C. Goupil, P. Mathieu, A. Brulet, C. D. Dewhurst, and A. I. Rykov, Phys. Rev. B , 2007, 75(22): 224512
doi: 10.1103/PhysRevB.75.224512
32 Y. Li, N. Egetenmeyer, J. L. Gavilano, N. Barisic, and M. Greven, Phys. Rev. B , 2011, 83(5): 054507
doi: 10.1103/PhysRevB.83.054507
33 A. D. Bianchi, M. Kenzelmann, L. DeBeer-Schmitt, J. S. White, E. M. Forgan, J. Mesot, M. Zolliker, J. Kohlbrecher, R. Movshovich, E. D. Bauer, J. L. Sarrao, Z. Fisk, C. Petrovic, and M. R. Eskildsen, Science , 2008, 319: 177
doi: 10.1126/science.1150600
34 C. Petrovic, P. G. Pagliuso, M. F. Hundley, R. Movshovich, J. L. Sarrao, J. D. Thompson, Z. Fisk, and P. Monthoux, J. Phys.: Condens. Matter , 2001, 13(17): L337
doi: 10.1088/0953-8984/13/17/103
35 K. Izawa, H. Yamaguchi, Y. Matsuda, H. Shishido, R. Settai, and Y. Onuki, Phys. Rev. Lett. , 2001, 87(5): 057002
doi: 10.1103/PhysRevLett.87.057002
36 A. Vorontsov and I. Vekhter, Phys. Rev. Lett. , 2006, 96(23): 237001
doi: 10.1103/PhysRevLett.96.237001
37 M. R. Eskildsen, K. Harada, P. L. Gammel, A. B. Abrahamsen, N. H. Andersen, G. Ernst, A. P. Ramirez, D. J. Bishop, K. Mortensen, D. G. Naugle, K. D. D. Rathnayaka, and P. C. Canfield, Nature , 1998, 393(6682): 242
doi: 10.1038/30447
38 L. DeBeer-Schmitt, M. R. Eskildsen, M. Ichioka, K. Machida, N. Jenkins, C. D. Dewhurst, A. B. Abrahamsen, S. L. Bud’ko, and P. C. Canfield, Phys. Rev. Lett. , 2007, 99(16): 167001
doi: 10.1103/PhysRevLett.99.167001
39 I. Joumard, J. Marcus, T. Klein, and R. Cubitt, Phys. Rev. Lett. , 1999, 82(24): 4930
doi: 10.1103/PhysRevLett.82.4930
40 T. Klein, I. Joumard, S. Blanchard, J. Marcus, R. Cubitt, T. Giamarchi, and P. Le Doussal, Nature , 2001, 413(6854): 404
doi: 10.1038/35096534
41 M. Laver, E. M. Forgan, A. B. Abrahamsen, C. Bowell, T. Geue, and R. Cubitt, Phys. Rev. Lett. , 2008, 100(10): 107001
doi: 10.1103/PhysRevLett.100.107001
42 P. Das, T. O’Brien, M. Laver, C. D. Dewhurst, N. Ni, S. L. Bud’ko, P. C. Canfield, and M. R. Eskildsen, Supercond. Sci. Technol. , 2010, 23(5): 054007
doi: 10.1088/0953-2048/23/5/054007
43 M. R. Eskildsen, L. Y. Vinnikov, T. D. Blasius, I. S. Veshchunov, T. M. Artemova, J. M. Densmore, C. D. Dewhurst, N. Ni, A. Kreyssig, S. L. Bud’ko, P. C. Canfield, and A. I. Goldman, Phys. Rev. B , 2009, 79(10): 100501
doi: 10.1103/PhysRevB.79.100501
44 M. R. Eskildsen, L. Y. Vinnikov, I. S. Veshchuno, T. M. Artemova, T. D. Blasius, J. M. Densmore, C. D. Dewhurst, N. Ni, A. Kreyssig, S. L. Bud’ko, P. C. Canfield, and A. I. Goldman, Physica C , 2009, 469(9-12): 529
doi: 10.1016/j.physc.2009.03.042
45 D. S. Inosov, T. Shapoval, V. Neu, U. Wolff, J. S. White, S. Haindl, J. T. Park, D. L. Sun, C. T. Lin, E. M. Forgan, M. S. Viazovska, J. H. Kim, M. Laver, K. Nenkov, O. Khvostikova, S. Kuehnemann, and V. Hinkov, Phys. Rev. B , 2010, 81(1): 014513
doi: 10.1103/PhysRevB.81.014513
46 Y. Yin, M. Zech, T. L. Williams, X. F. Wang, G. Wu, X. H. Chen, and J. E. Hoffman, Phys. Rev. Lett. , 2009, 102(9): 097002
doi: 10.1103/PhysRevLett.102.097002
47 H. Kawano-Furukawa, C. J. Bowell, J. S. White, J. L. Gavilano, A. S. C. R. W. Heslop, E. M. Forgan, A. I. K. Kihou, C. H. Lee, H. Eisaki, T. Saito, H. Fukazawa, and Y. Kohori, Phys. Rev. B , 2011, 84(2): 024507
doi: 10.1103/PhysRevB.84.024507
48 D. S. Inosov, J. S. White, D. V. Evtushinsky, I. V. Morozov, A. Cameron, U. Stockert, V. B. Zabolotnyy, T. K. Kim, A. A. Kordyuk, S. V. Borisenko, E. M. Forgan, R. Klingeler, J. T. Park, S. Wurmehl, A. N. Vasiliev, G. Behr, C. D. Dewhurst, and V. Hinkov, Phys. Rev. Lett. , 2010, 104(18): 187001
doi: 10.1103/PhysRevLett.104.187001
49 L. DeBeer-Schmitt., in preparation
50 L. Shan, Y. L. Wang, B. Shen, B. Zeng, Y. Huang, A. Li, D. Wang, H. Yang, C. Ren, Q. H. Wang, S. H. Pan, and H. H. Wen, Nat. Phys. , 2011, 7(4): 325
doi: 10.1038/nphys1908
51 M. R. Eskildsen, E. M. Forgan, and H. Kawano-Furukawa, Rep. Prog. Phys. , 2011, 74(12): 124504
doi: 10.1088/0034-4885/74/12/124504
52 D. K. Christen, F. Tasset, S. Spooner, and H. A. Mook, Phys. Rev. B , 1977, 15(9): 4506
doi: 10.1103/PhysRevB.15.4506
53 A. Yaouanc, P. D. deReotier, and E. H. Brandt, Phys. Rev. B , 1997, 55(17): 11107
doi: 10.1103/PhysRevB.55.11107
54 M. R. Eskildsen, P. L. Gammel, B. P. Barber, A. P. Ramirez, D. J. Bishop, N. H. Andersen, K. Mortensen, C. A. Bolle, C. M. Lieber, and P. C. Canfield, Phys. Rev. Lett. , 1997, 79(3): 487
doi: 10.1103/PhysRevLett.79.487
55 J. R. Clem, J. Low Temp. Phys. , 1975, 18(5-6): 427
doi: 10.1007/BF00116134
56 J. Clem, in: Low Temperature Physics- LT14, edited by M. Krusius and M. Vuorio, Amsterdam: North-Holland, 1975, Vol. 2: 285-288
57 Z. D. Hao, J. R. Clem, M. W. Mcelfresh, L. Civale, A. P. Malozemoff, and F. Holtzberg, Phys. Rev. B , 1991, 43(4): 2844
doi: 10.1103/PhysRevB.43.2844
58 E. H. Brandt, Rep. Prog. Phys. , 1995, 58(11): 1465
doi: 10.1088/0034-4885/58/11/003
59 E. H. Brandt, Phys. Rev. Lett. , 1997, 78(11): 2208
doi: 10.1103/PhysRevLett.78.2208
60 E. Boaknin, R. W. Hill, C. Proust, C. Lupien, L. Taillefer, and P. C. Canfield, Phys. Rev. Lett. , 2001, 87(23): 237001
doi: 10.1103/PhysRevLett.87.237001
61 H. Kim, C. D. Hwang, and J. Ihm, Phys. Rev. B , 1995, 52(6): 4592
doi: 10.1103/PhysRevB.52.4592
62 S. B. Dugdale, M. A. Alam, I. Wilkinson, R. J. Hughes, I. R. Fisher, P. C. Canfield, T. Jarlborg, and G. Santi, Phys. Rev. Lett. , 1999, 83(23): 4824
doi: 10.1103/PhysRevLett.83.4824
63 P. Starowicz, C. Liu, R. Khasanov, T. Kondo, G. Samolyuk, D. Gardenghi, Y. Lee, T. Ohta, B. Harmon, P. Canfield, S. Bud’ko, E. Rotenberg, and A. Kaminski, Phys. Rev. B , 2008, 77(13): 134520
doi: 10.1103/PhysRevB.77.134520
64 I. S. Yang, M. V. Klein, S. L. Cooper, P. C. Canfield, B. K. Cho, and S. I. Lee, Phys. Rev. B , 2000, 62(2): 1291
doi: 10.1103/PhysRevB.62.1291
65 A. Andreone, A. Cassinese, L. Gianni, M. Iavarone, F. Palomba, and R. Vaglio, Phys. Rev. B , 2001, 64(10): 100505
doi: 10.1103/PhysRevB.64.100505
66 K. Maki, P. Thalmeier, and H. Won, Phys. Rev. B , 2002, 65(14): 140502
doi: 10.1103/PhysRevB.65.140502
67 K. Izawa, K. Kamata, Y. Nakajima, Y. Matsuda, T. Watanabe, M. Nohara, H. Takagi, P. Thalmeier, and K. Maki, Phys. Rev. Lett. , 2002, 89(13): 137006
doi: 10.1103/PhysRevLett.89.137006
68 P. Martinez-Samper, H. Suderow, S. Vieira, J. Brison, N. Luchier, P. Lejay, and P. Canfield, Phys. Rev. B , 2003, 67(1): 014526
doi: 10.1103/PhysRevB.67.014526
69 P. Raychaudhuri, D. Jaiswal-Nagar, G. Sheet, S. Ramakrishnan, and H. Takeya, Phys. Rev. Lett. , 2004, 93(15): 156802
doi: 10.1103/PhysRevLett.93.156802
70 N. L. Bobrov, S. I. Beloborod’ko, L. V. Tyutrina, I. K. Yanson, D. G. Naugle, and K. D. D. Rathnayaka, Phys. Rev. B , 2005, 71(1): 014512
doi: 10.1103/PhysRevB.71.014512
71 J. E. Sonier, J. Phys. Condens. Matter , 2004, 16(40): S4499
doi: 10.1088/0953-8984/16/40/006
72 K. Machida and M. Ichioka, private communication
73 J. S. White, P. Das, M. R. Eskildsen, L. DeBeer-Schmitt, E. M. Forgan, A. D. Bianchi, M. Kenzelmann, M. Zolliker, S. Gerber, J. L. Gavilano, J. Mesot, R. Movshovich, E. D. Bauer, J. L. Sarrao, and C. Petrovic, New J. Phys. , 2010, 12(2): 023026
doi: 10.1088/1367-2630/12/2/023026
74 B. K. Cho, M. Xu, P. C. Canfield, L. L. Miller, and D. C. Johnston, Phys. Rev. B , 1995, 52(5): 3676
doi: 10.1103/PhysRevB.52.3676
75 J. Jensen and P. Hedeg?rd, Phys. Rev. B , 2007, 76(9): 094504
doi: 10.1103/PhysRevB.76.094504
76 P. Fulde and R. A. Ferrell, Phys. Rev. , 1964, 135(3A): A550
doi: 10.1103/PhysRev.135.A550
77 A. I. Larkin and Y. N. Ovchinnikov, Sov. Phys. JETP , 1965, 20: 762
78 A. Bianchi, R. Movshovich, N. Oeschler, P. Gegenwart, F. Steglich, J. D. Thompson, P. G. Pagliuso, and J. L. Sarrao, Phys. Rev. Lett. , 2002, 89(13): 137002
doi: 10.1103/PhysRevLett.89.137002
79 T. Tayama, A. Harita, T. Sakakibara, Y. Haga, H. Shishido, R. Settai, and Y. Onuki, Phys. Rev. B , 2002, 65(18): 180504
doi: 10.1103/PhysRevB.65.180504
80 A. M. Clogston, Phys. Rev. Lett. , 1962, 9(6): 266
doi: 10.1103/PhysRevLett.9.266
81 K. Maki, Phys. Rev. , 1966, 148(1): 362
doi: 10.1103/PhysRev.148.362
82 A. Bianchi, R. Movshovich, I. Vekhter, P. G. Pagliuso, and J. L. Sarrao, Phys. Rev. Lett. , 2003, 91(25): 257001
doi: 10.1103/PhysRevLett.91.257001
83 H. A. Radovan, N. A. Fortune, T. P. Murphy, S. T. Hannahs, E. C. Palm, S. W. Tozer, and D. Hall, Nature , 2003, 425(6953): 51
doi: 10.1038/nature01842
84 H. A. Radovan, N. A. Fortune, T. P. Murphy, S. T. Hannahs, E. C. Palm, S. W. Tozer, and D. Hall, Nature , 2004, 427(6977): 802
doi: 10.1038/427802b
85 K. Kakuyanagi, M. Saitoh, K. Kumagai, S. Takashima, M. Nohara, H. Takagi, and Y. Matsuda, Phys. Rev. Lett. , 2005, 94(4): 047602
doi: 10.1103/PhysRevLett.94.047602
86 G. Koutroulakis and M. D. S. Jr, Phys. Rev. Lett. , 2010, 104(8): 087001
doi: 10.1103/PhysRevLett.104.087001
87 K. Kumagai, H. Shishido, T. Shibauchi, and Y. Matsuda, Phys. Rev. Lett. , 2011, 106(13): 137004
doi: 10.1103/PhysRevLett.106.137004
88 M. Kenzelmann, T. Str?ssle, C. Niedermayer, M. Sigrist, B. Padmanabhan, M. Zolliker, A. D. Bianchi, R. Movshovich, E. D. Bauer, J. L. Sarrao, and J. D. Thompson, Science , 2008, 321(5896): 1652
doi: 10.1126/science.1161818
89 E. Blackburn, P. Das, M. R. Eskildsen, E. M. Forgan, M. Laver, C. Niedermayer, C. Petrovic, and J. S. White, Phys. Rev. Lett. , 2010, 105(18): 187001
doi: 10.1103/PhysRevLett.105.187001
90 A. Bianchi, R. Movshovich, C. Capan, P. G. Pagliuso, and J. L. Sarrao, Phys. Rev. Lett. , 2003, 91(18): 187004
doi: 10.1103/PhysRevLett.91.187004
91 M. Ichioka and K. Machida, Phys. Rev. B , 2007, 76(6): 064502
doi: 10.1103/PhysRevB.76.064502
92 V. P. Michal and V. P. Mineev, Phys. Rev. B , 2010, 82(10): 104505
doi: 10.1103/PhysRevB.82.104505
93 G. Eilenberger, Z. Phys. , 1968, 214(2): 195
doi: 10.1007/BF01379803
94 R. Ikeda, Y. Hatakeyama, and K. Aoyama, Phys. Rev. B , 2010, 82(6): 060510
doi: 10.1103/PhysRevB.82.060510
95 K. Aoyama and R. Ikeda, arXiv:1107.5577v1 , 2011
96 R. Settai, H. Shishido, S. Ikeda, Y. Murakawa, M. Nakashima, D. Aoki, Y. Haga, H. Harima, and Y. Onuki, J. Phys. Condens. Matter , 2001, 13(27): L627
doi: 10.1088/0953-8984/13/27/103
97 M. A. Tanatar, J. Paglione, C. Petrovic, and L. Taillefer, Science , 2007, 316(5829): 1320
doi: 10.1126/science.1140762
[1] Mike Guidry, Yang Sun, Lian-Ao Wu, Cheng-Li Wu. Fermion dynamical symmetry and strongly-correlated electrons: A comprehensive model of high-temperature superconductivity[J]. Front. Phys. , 2020, 15(4): 43301-.
[2] Xue-Hui Xiao, De-Fang Duan, Yan-Bin Ma, Hui Xie, Hao Song, Da Li, Fu-Bo Tian, Bing-Bing Liu, Hong-Yu Yu, Tian Cui. Ab initio studies of copper hydrides under high pressure[J]. Front. Phys. , 2019, 14(4): 43601-.
[3] Dong-Dong Wang, Bin Liu, Min Liu, Yi-Feng Yang, Shi-Ping Feng. Impurity-induced bound states as a signature of pairing symmetry in multiband superconducting CeCu2Si2[J]. Front. Phys. , 2019, 14(1): 13501-.
[4] Shengshan Qin, Yinxiang Li, Qiang Zhang, Congcong Le, Jiangping Hu. Theoretical studies of superconductivity in doped BaCoSO[J]. Front. Phys. , 2018, 13(3): 137502-.
[5] Ryszard Gonczarek, Mateusz Krzyzosiak, Adam Gonczarek, Lucjan Jacak. Analytical assessment of some characteristic ratios for s-wave superconductors[J]. Front. Phys. , 2018, 13(2): 137403-.
[6] R. Szcze¸śniak, A. P. Durajski, M. W. Jarosik. Strong-coupling superconductivity induced by calcium intercalation in bilayer transition-metal dichalcogenides[J]. Front. Phys. , 2018, 13(2): 137401-.
[7] Qian Chen,Xiaohui Yang,Xiaojun Yang,Jian Chen,Chenyi Shen,Pan Zhang,Yupeng Li,Qian Tao,Zhu-An Xu. Enhanced superconductivity in hole-doped Nb2PdS5[J]. Front. Phys. , 2017, 12(5): 127402-.
[8] Mateusz Krzyzosiak, Ryszard Gonczarek, Adam Gonczarek, Lucjan Jacak. Applications of the conformal transformation method in studies of composed superconducting systems[J]. Front. Phys. , 2016, 11(6): 117407-.
[9] Jiangping Hu,Jing Yuan. Robustness of s-wave pairing symmetry in iron-based superconductors and its implications for fundamentals of magnetically driven high-temperature superconductivity[J]. Front. Phys. , 2016, 11(5): 117404-.
[10] Mike Guidry, Yang Sun. Superconductivity and superfluidity as universal emergent phenomena[J]. Front. Phys. , 2015, 10(4): 107404-.
[11] Wang Rui-Feng(王瑞峰). A possible interplay between electron beams and magnetic fluxes in the Aharonov–Bohm effect[J]. Front. Phys. , 2015, 10(3): 100305-.
[12] Dingping Li, Baruch Rosenstein, B. Ya. Shapiro, I. Shapiro. Chiral universality class of normal-superconducting and exciton condensation transitions on surface of topological insulator[J]. Front. Phys. , 2015, 10(3): 107402-.
[13] Qijin Chen, Jibiao Wang. Pseudogap phenomena in ultracold atomic Fermi gases[J]. Front. Phys. , 2014, 9(5): 539-570.
[14] Shu-Wei Song, Lin Wen, Chao-Fei Liu, S.-C. Gou, Wu-Ming Liu. Ground states, solitons and spin textures in spin-1 Bose–Einstein condensates[J]. Front. Phys. , 2013, 8(3): 302-318.
[15] Jiajun Ouyang, W. LiMing, Liangbin Hu. Andreev reflection and tunneling spectrum on metal–superconductor–metal junctions[J]. Front. Phys. , 2012, 7(4): 449-452.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed