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Topological classification of intrinsic 3D superconductors using anomalous surface construction

Published 29 Sep 2021 in cond-mat.mes-hall, cond-mat.mtrl-sci, and cond-mat.supr-con | (2109.14629v3)

Abstract: Intrinsic topological superconductors have protected gapless Majorana modes, bound and/or propagating, at the natural boundaries of the sample, without requiring field, defect, or heterostructure. We establish the complete classification/construction of intrinsic topological superconductors jointly protected by point-group and time-reversal symmetries in three dimensions. This is obtained from enumerating distinct ways for stacking $n$th-order irreducible building blocks, minimal anomalous surface states of $n$th-order topological superconductors. Particularly, our method provides a unified description of possible surface anomalies away from high-symmetry points/lines in terms of the homotopy group of the surface mass field.

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