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非布洛赫宇称时间对称破缺的几何起源

Geometric Origin of Non-Bloch PT Symmetry Breaking.

作者信息

Hu Yu-Min, Wang Hong-Yi, Wang Zhong, Song Fei

机构信息

Institute for Advanced Study, Tsinghua University, Beijing, 100084, China.

Kavli Institute for Theoretical Sciences, Chinese Academy of Sciences, Beijing, 100190, China.

出版信息

Phys Rev Lett. 2024 Feb 2;132(5):050402. doi: 10.1103/PhysRevLett.132.050402.

Abstract

The parity-time (PT) symmetry of a non-Hermitian Hamiltonian leads to real (complex) energy spectrum when the non-Hermiticity is below (above) a threshold. Recently, it has been demonstrated that the non-Hermitian skin effect generates a new type of PT symmetry, dubbed the non-Bloch PT symmetry, featuring unique properties such as high sensitivity to the boundary condition. Despite its relevance to a wide range of non-Hermitian lattice systems, a general theory is still lacking for this generic phenomenon even in one spatial dimension. Here, we uncover the geometric mechanism of non-Bloch PT symmetry and its breaking. We find that non-Bloch PT symmetry breaking occurs by the formation of cusps in the generalized Brillouin zone (GBZ). Based on this geometric understanding, we propose an exact formula that efficiently determines the breaking threshold. Moreover, we predict a new type of spectral singularities associated with the symmetry breaking, dubbed non-Bloch van Hove singularity, whose physical mechanism fundamentally differs from their Hermitian counterparts. This singularity is experimentally observable in linear responses.

摘要

非厄米哈密顿量的宇称-时间(PT)对称性在非厄米性低于(高于)阈值时会导致实(复)能谱。最近,已证明非厄米趋肤效应产生了一种新型的PT对称性,称为非布洛赫PT对称性,其具有对边界条件高度敏感等独特性质。尽管它与广泛的非厄米晶格系统相关,但即使在一维空间中,对于这种一般现象仍缺乏一个通用理论。在此,我们揭示了非布洛赫PT对称性及其破缺的几何机制。我们发现非布洛赫PT对称性破缺是由广义布里渊区(GBZ)中尖点的形成引起的。基于这种几何理解,我们提出了一个能有效确定破缺阈值的精确公式。此外,我们预测了一种与对称性破缺相关的新型谱奇点,称为非布洛赫范霍夫奇点,其物理机制与厄米对应物有根本不同。这种奇点在线性响应中是可实验观测的。

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