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Higher-order topological and nodal superconducting transition-metal sulfides MS (M = Nb and Ta)

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arxiv 2304.03062 v4 pith:3JAPQ555 submitted 2023-04-06 cond-mat.supr-con

Higher-order topological and nodal superconducting transition-metal sulfides MS (M = Nb and Ta)

classification cond-mat.supr-con
keywords topologicalsuperconductinghigher-orderquantumsuperconductorscalculationsdevicesexotic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Intrinsic topological superconducting materials are exotic and vital to develop the next-generation topological superconducting devices, topological quantum calculations, and quantum information technologies. Here, we predict the topological and nodal superconductivity of MS (M = Nb and Ta) transition-metal sulfides by using the density functional theory for superconductors combining with the symmetry indicators. We reveal their higher-order topology nature with an index of Z4 = 2. These materials have a higher Tc than the Nb or Ta metal superconductors due to their flat-band and strong electron-phonon coupling nature. Electron doping and lighter isotopes can effectively enhance the Tc. Our findings show that the MS (M = Nb and Ta) systems can be new platforms to study exotic physics in the higher-order topological superconductors, and provide a theoretical support to utilize them as the topological superconducting devices in the field of advanced topological quantum calculations and information technologies.

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