Abstract
We study the quantum entanglement and quantum phase transition of the non-Hermitian anisotropic spin- ½ XY model and XXZ model with the staggered imaginary field by analytical methods and numerical exact diagonalization, respectively. Various entanglement measures, including concurrence, negativity, mutual information, and quantum coherence, and both biorthogonal and self-normal quantities are investigated. Both the biorthogonal and self-normal entanglement quantities, except the biorthogonal concurrence, are found to be capable of detecting the first-order and PT transitions in the XXZ model, as well as the Ising and RT transitions in the XY model. In addition, we introduce the unconstrained concurrence and demonstrate its effectiveness in detecting these transitions. On the other hand, the Berezinskii-Kosterlitz-Thouless (BKT) transition in the XXZ model is revealed through concurrence and negativity at small non-Hermiticity strengths. Notably, the critical points observed in the Hermitian limit evolve into exceptional points as the strength of the non-Hermiticity increases. Furthermore, we find that the first-order transition survives up to a higher non-Hermiticity strength compared to the BKT transition within the PT -symmetric regime of the XXZ model. © 2025 American Physical Society
| Original language | English |
|---|---|
| Article number | 144308 |
| Number of pages | 13 |
| Journal | Physical Review B |
| Volume | 112 |
| Issue number | 14 |
| Online published | 17 Oct 2025 |
| DOIs | |
| Publication status | Published - Oct 2025 |
Funding
We thank Y.-C. Li, X. Yang, and X. Ji for helpful discussions. This work is supported by Research Grants Council of Hong Kong (Grant No. CityU 11318722) and City University of Hong Kong (Grants No. 9610438, No. 7006018, and No. 9680320).
Publisher's Copyright Statement
- COPYRIGHT TERMS OF DEPOSITED FINAL PUBLISHED VERSION FILE: Zhang, L.-F., & Yu, W. C. (2025). Probing phase transitions in non-Hermitian systems with quantum entanglement. Physical Review B, 112(14), Article 144308 . https://doi.org/10.1103/26jz-zmsv The copyright of this article is owned by American Physical Society.
RGC Funding Information
- RGC-funded
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GRF: Unveiling Quantum Phase Transitions and Constructing the Order Parameters in Interacting Quantum Many-body Systems with Unsupervised Machine Learning
YU, W. C. (Principal Investigator / Project Coordinator)
1/11/22 → …
Project: Research
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