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We study the superconductivity of spin-polarized electrons in centrosymmetric ferromagnetic metals.
1905
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1906
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S. S. Saxena, P. Agarwal, K. Ahilan, F. M. Grosche, R. K. W. Haselwimmer, M. J. Steiner, E. Pugh, I. R. Walker, S. R. Julian, P. Monthoux, et al. , “Superconductivity on the border of itinerant-electron ferromagnetism in UGe 2 ,” Nature (London) 406
2000
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A. Y. Kitaev “Unpaired Majorana fermions in quantum wires,” Phys. Usp. 44
2001
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A. Huxley, I. Sheikin, E. Ressouche, N. Kernavanois, D. Braithwaite, R. Calemczuk, and J. Flouquet, “UGe 2 : A ferromagnetic spin-triplet superconductor,” Phys. Rev. B 63
2001
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D. Aoki, A. Huxley, E. Ressouche, D. Braithwaite, J. Flouquet, Jean-Pascal Brison, Elsa Lhotel, and Carley Paulsen, “Coexistence of superconductivity and ferromagnetism in URhGe,” Nature (London) 413
2001
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A. Kitaev, “Fault-tolerant quantum computation by anyons,” Ann. Phys. 303
2003
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M. Eschrig, J. Kopu, J. C. Cuevas, and G. Schön, “Theory of half-metal/superconductor heterostructures,” Phys. Rev. Lett. 90
2003
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N. T. Huy, A. Gasparini, D. E. De Nijs, Y. Huang, J. C. P. Klaasse, T. Gortenmulder, A. de Visser, A. Hamann, T. Görlach, and H. v. Löhneysen, “Superconductivity on the border of weak itinerant ferromagnetism in UCoGe,” Phys. Rev. Lett. 99
2007
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C. Nayak, S. H. Simon, A. Stern, M. Freedman, and S. Das Sarma, “Non-abelian anyons and topological quantum computation,” Rev. Mod. Phys. 80
2008
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M. Sato, “Topological properties of spin-triplet superconductors and Fermi surface topology in the normal state,” Phys. Rev. B 79
2009
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L. Fu and E. Berg, “Odd-parity topological superconductors: theory and application to Cu x
2010
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M. Sato, “Topological odd-parity superconductors,” Phys. Rev. B 81
2010
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J. Alicea, “New directions in the pursuit of Majorana fermions in solid state systems,” Rep. Prog. Phys. 75
2012
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S. Das Sarma, M. Freedman, and C. Nayak, “Majorana zero modes and topological quantum computation,” npj Quantum Inf. 1
2015
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C. Fang and L. Fu, “New classes of three-dimensional topological crystalline insulators: Nonsymmorphic and magnetic,” Phys. Rev. B 91
2015
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Y. Kim, B. J. Wieder, C. L. Kane, and A. M. Rappe, “Dirac line nodes in inversion-symmetric crystals,” Phys. Rev. Lett. 115
2015
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A. D. Huxley, “Ferromagnetic superconductors,” Physica C 514
2015
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M. Sato and Y. Ando, “Topological superconductors: a review,” Rep. Prog. Phys. 80
2017
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T. Bzdušek and M. Sigrist, “Robust doubly charged nodal lines and nodal surfaces in centrosymmetric systems,” Phys. Rev. B 96
2017
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T. Bzdušek and M. Sigrist, “Robust doubly charged nodal lines and nodal surfaces in centrosymmetric systems,” Phys. Rev. B 96
2017
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E. Khalaf, “Higher-order topological insulators and superconductors protected by inversion symmetry,” Phys. Rev. B 97
2018
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M. Geier, L. Trifunovic, M. Hoskam, and P. W. Brouwer, “Second-order topological insulators and superconductors with an order-two crystalline symmetry,” Phys. Rev. B 97
2018
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2019
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R.-X. Zhang, W. S. Cole, X. Wu, and S. Das Sarma, “Higher order topology and nodal topological superconductivity in Fe(Se,Te) heterostructures,” Phys. Rev. Lett. 123
2019
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S. Franca, D. V. Efremov, and I. C. Fulga, “Phase tunable second-order topological superconductor,” Phys. Rev. B. 100
2019
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2019
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S. Ono, Y. Yanase, and H. Watanabe, “Symmetry indicators for topological superconductors,” Phys. Rev. Research 1
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T. Liu, J. J. He, F. Nori, et al. , “Majorana corner states in a two-dimensional magnetic topological insulator on a high-temperature superconductor,” Phys. Rev. B 98
2018
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Z. Yan, F. Song, and Z. Wang, “Majorana corner modes in a high-temperature platform,” Phys. Rev. Lett. 121
2018
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C.-H. Hsu, P. Stano, J. Klinovaja, and D. Loss, “Majorana Kramers pairs in higher-order topological insulators,” Phys. Rev. Lett. 121
2018
Cited alongside, same era.
J. Ahn, D. Kim, Y. Kim, and B.-J. Yang, “Band topology and linking structure of nodal line semimetals with Z 2 Z_{2} monopole charges,” Phys. Rev. Lett. 121
2018
Cited alongside, same era.
Z. Song, T. Zhang, and C. Fang, “Diagnosis for nonmagnetic topological semimetals in the absence of spin-orbital coupling,” Phys. Rev. X 8
2018
Cited alongside, same era.
E. Khalaf, H. C. Po, A. Vishwanath, and H. Watanabe, “Symmetry indicators and anomalous surface states of topological crystalline insulators,” Phys. Rev. X 8
2018
Cited alongside, same era.
X. Wang, T. Li, Z. Cheng, X.-L. Wang, and H. Chen, Recent advances in dirac spin-gapless semiconductors, Appl, Phys. Rev. 5
2018
Cited alongside, same era.
2019
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Y. Hwang, J. Ahn, and B.-J. Yang, “Fragile topology protected by inversion symmetry: Diagnosis, bulk-boundary correspondence, and wilson loop,” Phys. Rev. B 100
2019
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J. Ahn, S. Park, and B.-J. Yang, “Failure of Nielsen-Ninomiya theorem and fragile topology in two-dimensional systems with space-time inversion symmetry: Application to twisted bilayer graphene at magic angle,” Phys. Rev. X 9
2019
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J. Zou, Z. He, and G. Xu, The study of magnetic topological semimetals by first principles calculations, npj Comput. Mater. 5
2019
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C. Chen, Z.-M. Yu, S. Li, Z. Chen, X.-L. Sheng, and S. A. Yang, Weyl-loop half-metal in Li 3 (FeO 3 ) 2 , Phys. Rev. B 99
2019
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X. Zuo, A. C. Dias, F. Liu, L. Han, H. Li, Q. Gao, X. Jiang, D. Li, B. Cui, D. Liu, F. Qu, Fully spin-polarized open and closed nodal lines in β \beta -borophene by magnetic proximity effect, Phys. Rev. B 100
2019
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D. Aoki, K. Ishida, and J. Flouquet, “Review of U-based ferromagnetic superconductors: Comparison between UGe 2 , URhGe, and UCoGe,” J. Phys. Soc. Jpn. 88
2019
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S. Ran, C. Eckberg, Q.-P. Ding, Y. Furukawa, T. Metz, S. R. Saha, I.-L. Liu, M. Zic, H. Kim, J. Paglione, et al. , Nearly ferromagnetic spin-triplet superconductivity, Science 365
2019
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2019
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J. Y. Lee, E. Khalaf, S. Liu, X. Liu, Z. Hao, P. Kim, and A. Vishwanath, “Theory of correlated insulating behaviour and spin-triplet superconductivity in twisted double bilayer graphene,” Nat. Commun. 10
2019
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2019
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Z. Yan, “Higher-order topological odd-parity superconductors,” Phys. Rev. Lett. 123
2019
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A. Skurativska, T. Neupert, and M. H. Fischer, “Atomic limit and inversion-symmetry indicators for topological superconductors,” Phys. Rev. Research 2
2020
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