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Ising Superconductivity and Majorana Fermions in Transition Metal Dichalcogenides

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arxiv 1510.06289 v4 pith:YVS33YXO submitted 2015-10-21 cond-mat.supr-con

classification cond-mat.supr-con
keywords isingcooperfieldspairsdichalcogenidesdirectionsequal-spinin-plane
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abstract

In monolayer transition metal dichalcogenides (TMDs), electrons in opposite $K$ valleys are subject to opposite effective Zeeman fields, which are referred to as Ising spin-orbit coupling (SOC) fields. The Ising SOC, originated from in-plane mirror symmetry breaking pins the electron spins in out-of-plane directions, and results in the newly discovered Ising superconducting states with strongly enhanced upper critical fields. In this work, we show that the Ising SOC generates equal-spin triplet Cooper pairs with spin polarization in the in-plane directions. Importantly, the spin-triplet Cooper pairs can induce superconducting pairings in a half-metal wire placed on top of the TMD and result in a topological superconductor with Majorana end states. Direct ways to detect equal-spin triplet Cooper pairs and the differences between Ising superconductors and Rashba superconductors are discussed.

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  1. Understanding the origin of superconducting dome in electron-doped MoS$_2$ monolayer

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    The superconducting dome in electron-doped MoS2 is recreated from first principles and traced to the 1x1 H to 2x2 charge-density-wave transition and later structural phases.

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