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非厄米系统中的双正交体边对应。

Biorthogonal Bulk-Boundary Correspondence in Non-Hermitian Systems.

机构信息

Department of Physics, Stockholm University, AlbaNova University Center, 106 91 Stockholm, Sweden.

Institute of Theoretical Physics, Technische Universität Dresden, 01062 Dresden, Germany.

出版信息

Phys Rev Lett. 2018 Jul 13;121(2):026808. doi: 10.1103/PhysRevLett.121.026808.

Abstract

Non-Hermitian systems exhibit striking exceptions from the paradigmatic bulk-boundary correspondence, including the failure of bulk Bloch band invariants in predicting boundary states and the (dis)appearance of boundary states at parameter values far from those corresponding to gap closings in periodic systems without boundaries. Here, we provide a comprehensive framework to unravel this disparity based on the notion of biorthogonal quantum mechanics: While the properties of the left and right eigenstates corresponding to boundary modes are individually decoupled from the bulk physics in non-Hermitian systems, their combined biorthogonal density penetrates the bulk precisely when phase transitions occur. This leads to generalized bulk-boundary correspondence and a quantized biorthogonal polarization that is formulated directly in systems with open boundaries. We illustrate our general insights by deriving the phase diagram for several microscopic open boundary models, including exactly solvable non-Hermitian extensions of the Su-Schrieffer-Heeger model and Chern insulators.

摘要

非厄米系统表现出了与典型体边界对应关系的显著例外,包括体布洛赫能带不变量在预测边界态时的失效,以及在没有边界的周期性系统中,远离对应于能隙闭合的参数值处边界态的(出现和)消失。在这里,我们提供了一个基于双正交量子力学概念的综合框架来揭示这种差异:虽然对应于边界模式的左右本征态的性质在非厄米系统中各自与体物理解耦,但它们的组合双正交密度在相变发生时精确地穿透体。这导致了广义的体边界对应关系和量子化的双正交极化,它直接在具有开放边界的系统中被构建。我们通过推导出几个微观开边界模型的相图来说明我们的一般见解,包括苏-施里弗-赫格模型和陈绝缘体的精确可解非厄米扩展。

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