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Biorthogonal Dynamical Quantum Phase Transitions in Non-Hermitian Systems

Quantum Physics 2024-06-03 v3 Statistical Mechanics

Abstract

By utilizing biorthogonal bases, we develop a comprehensive framework for studying biorthogonal dynamical quantum phase transitions in non-Hermitian systems. With the help of the previously overlooked associated state, we define the automatically normalized biorthogonal Loschmidt echo. This approach is capable of handling arbitrary non-Hermitian systems with complex eigenvalues and naturally eliminates the negative value of Loschmidt rate obtained without the biorthogonal bases. Taking the non-Hermitian Su-Schrieffer-Heeger model as a concrete example, a 1/21/2 change of dynamical topological order parameter in biorthogonal bases is observed which is not shown in self-normal bases. Furthermore, we discover that the periodicity of biorthogonal dynamical quantum phase transitions depends on whether the two-level subsystem at the critical momentum oscillates or reaches a steady state.

Keywords

Cite

@article{arxiv.2307.02993,
  title  = {Biorthogonal Dynamical Quantum Phase Transitions in Non-Hermitian Systems},
  author = {Yecheng Jing and Jian-Jun Dong and Yu-Yu Zhang and Zi-Xiang Hu},
  journal= {arXiv preprint arXiv:2307.02993},
  year   = {2024}
}

Comments

7 pages, 4 figures; Supplemental Material

R2 v1 2026-06-28T11:23:39.884Z