伊辛模型
双正交系统
厄米矩阵
物理
量子相变
临界指数
临界性
基态
特征向量
量子
统计物理学
相变
量子力学
数学
计算机科学
人工智能
小波
核物理学
小波变换
作者
Gaoyong Sun,Jia-Chen Tang,Su-Peng Kou
标识
DOI:10.1007/s11467-021-1126-1
摘要
We develop the perturbation theory of the fidelity susceptibility in biorthogonal bases for arbitrary interacting non-Hermitian many-body systems with real eigenvalues. The quantum criticality in the non-Hermitian transverse field Ising chain is investigated by the second derivative of the ground-state energy and the ground-state fidelity susceptibility. We show that the system undergoes a second-order phase transition with the Ising universal class by numerically computing the critical points and the critical exponents from the finite-size scaling theory. Interestingly, our results indicate that the biorthogonal quantum phase transitions are described by the biorthogonal fidelity susceptibility instead of the conventional fidelity susceptibility.
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