Discovery of Ĉ 2 rotation anomaly in topological crystalline insulator SrPb

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Abstract

Topological crystalline insulators (TCIs) are insulating electronic states with nontrivial topology protected by crystalline symmetries. Recently, theory has proposed new classes of TCIs protected by rotation symmetries Ĉ n, which have surface rotation anomaly evading the fermion doubling theorem, i.e., n instead of 2n Dirac cones on the surface preserving the rotation symmetry. Here, we report the first realization of the Ĉ 2 rotation anomaly in a binary compound SrPb. Our first-principles calculations reveal two massless Dirac fermions protected by the combination of time-reversal symmetry T̂ and Ĉ 2y on the (010) surface. Using angle-resolved photoemission spectroscopy, we identify two Dirac surface states inside the bulk band gap of SrPb, confirming the Ĉ 2 rotation anomaly in the new classes of TCIs. The findings enrich the classification of topological phases, which pave the way for exploring exotic behavior of the new classes of TCIs.

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Fan, W., Nie, S., Wang, C., Fu, B., Yi, C., Gao, S., … Ding, H. (2021). Discovery of Ĉ 2 rotation anomaly in topological crystalline insulator SrPb. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-22350-6

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