Construction of Non-Hermitian Parent Hamiltonian from Matrix Product States
Abstract
There are various research strategies used for non-Hermitian systems, which typically involve introducing non-Hermitian terms to pre-existing Hermitian Hamiltonians. It can be challenging to directly design non-Hermitian many-body models that exhibit unique features not found in Hermitian systems. In this Letter, we propose a new method to construct non-Hermitian many-body systems by generalizing the parent Hamiltonian method into non-Hermitian regimes. This allows us to build a local Hamiltonian using given matrix product states as its left and right ground states. We demonstrate this method by constructing a non-Hermitian spin- model from the asymmetric Affleck-Kennedy-Lieb-Tasaki (AKLT) state, which preserves both chiral order and symmetry-protected topological order. Our approach opens up a new paradigm for systematically constructing and studying non-Hermitian many-body systems, providing guiding principles to explore new properties and phenomena in non-Hermitian physics.
Keywords
Cite
@article{arxiv.2301.12448,
title = {Construction of Non-Hermitian Parent Hamiltonian from Matrix Product States},
author = {Ruohan Shen and Yuchen Guo and Shuo Yang},
journal= {arXiv preprint arXiv:2301.12448},
year = {2023}
}
Comments
14 pages, 10 figures, to appear in Physical Review Letters