Hybrid-order topological superconductivity in a topological metal 1T’-MoTe2

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作者
Sheng-Jie Huang
Kyungwha Park
Yi-Ting Hsu
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[1] Max Planck Institute for the Physics of Complex Systems,Department of Physics, Condensed Matter Theory Center, and Joint Quantum Institute
[2] University of Maryland,Department of Physics
[3] Virginia Tech,Department of Physics
[4] University of Notre Dame,undefined
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One key challenge in the field of topological superconductivity (Tsc) has been the rareness of material realization. This is true not only for the first-order Tsc featuring Majorana surface modes, but also for the higher-order Tsc, which host Majorana hinge and corner modes. Here, we propose a four-step strategy that mathematically derives comprehensive guiding principles for the search and design for materials of general higher-order Tsc phases. Specifically, such recipes consist of conditions on the normal state and pairing symmetry that can lead to a given higher-order Tsc state. We demonstrate this strategy by obtaining recipes for achieving three-dimensional higher-order Tsc phases protected by the inversion symmetry. Following our recipe, we predict that the observed superconductivity in centrosymmetric MoTe2 is a hyrbid-order Tsc candidate, which features both surface and corner modes. Our proposed strategy enables systematic materials search and design for higher-order Tsc, which can mobilize the experimental efforts and accelerate the material discovery for higher-order Tsc phases.
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