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Topological Peierls instabilities in more than one dimension

Published 27 Mar 2025 in cond-mat.other, cond-mat.str-el, and cond-mat.supr-con | (2503.21063v1)

Abstract: A periodic lattice distortion that reduces the translational symmetry folds electron bands into a reduced Brillouin zone, leading to band mixing and a tendency to gap formation, as in the Peierls transition in one-dimensional systems. However, in higher dimensions, the resulting phase can present topological obstructions preventing a complete gap opening. We discuss two different mechanisms for such obstructions, emergent Weyl nodes and symmetry protected band crossings. Based on density-functional calculations, we show these mechanisms are at play in trigonal PtBi$_2$.

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