Boundary Flat Bands with Topological Spin Textures Protected by Sub-chiral Symmetry

Fuente: arXiv
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Main Authors: Mo, Yijie, Wang, Xiao-Jiao, Yu, Rui, Yan, Zhongbo
Format: Preprint
Published: 2023
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author Mo, Yijie
Wang, Xiao-Jiao
Yu, Rui
Yan, Zhongbo
author_facet Mo, Yijie
Wang, Xiao-Jiao
Yu, Rui
Yan, Zhongbo
contents Chiral symmetry plays an indispensable role in topological classifications as well as in the understanding of the origin of bulk or boundary flat bands. The conventional definition of chiral symmetry refers to the existence of a constant unitary matrix anticommuting with the Hamiltonian. As a constant unitary matrix has constant eigenvectors, boundary flat bands enforced by chiral symmetry, which share the same eigenvectors with the chiral symmetry operator, are dictated to carry fixed (pseudo)spin polarizations and be featureless in quantum geometry. In this work, we generalize the chiral symmetry and introduce a concept termed sub-chiral symmetry. Unlike the conventional chiral symmetry operator defined as constant matrix, the sub-chiral symmetry operator depends on partial components of the momentum vector, so as its eigenvectors. We show that topological gapped or gapless systems without chiral symmetry but with sub-chiral symmetry can support boundary flat bands, which exhibit topological spin textures and quantized Berry phases. We expect that such intriguing boundary flat bands could give rise to a variety of exotic physics in the presence of interactions or disorders.
format Preprint
id arxiv_https___arxiv_org_abs_2307_01851
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Boundary Flat Bands with Topological Spin Textures Protected by Sub-chiral Symmetry
Mo, Yijie
Wang, Xiao-Jiao
Yu, Rui
Yan, Zhongbo
Materials Science
Mesoscale and Nanoscale Physics
Quantum Gases
Strongly Correlated Electrons
Quantum Physics
Chiral symmetry plays an indispensable role in topological classifications as well as in the understanding of the origin of bulk or boundary flat bands. The conventional definition of chiral symmetry refers to the existence of a constant unitary matrix anticommuting with the Hamiltonian. As a constant unitary matrix has constant eigenvectors, boundary flat bands enforced by chiral symmetry, which share the same eigenvectors with the chiral symmetry operator, are dictated to carry fixed (pseudo)spin polarizations and be featureless in quantum geometry. In this work, we generalize the chiral symmetry and introduce a concept termed sub-chiral symmetry. Unlike the conventional chiral symmetry operator defined as constant matrix, the sub-chiral symmetry operator depends on partial components of the momentum vector, so as its eigenvectors. We show that topological gapped or gapless systems without chiral symmetry but with sub-chiral symmetry can support boundary flat bands, which exhibit topological spin textures and quantized Berry phases. We expect that such intriguing boundary flat bands could give rise to a variety of exotic physics in the presence of interactions or disorders.
title Boundary Flat Bands with Topological Spin Textures Protected by Sub-chiral Symmetry
topic Materials Science
Mesoscale and Nanoscale Physics
Quantum Gases
Strongly Correlated Electrons
Quantum Physics
url https://arxiv.org/abs/2307.01851