Continuous Phase Transition without Gap Closing in Non-Hermitian Quantum Many-Body Systems
Statistical Mechanics
2020-12-29 v4 Strongly Correlated Electrons
Quantum Physics
Abstract
Contrary to the conventional wisdom in Hermitian systems, a continuous quantum phase transition between gapped phases is shown to occur without closing the energy gap in non-Hermitian quantum many-body systems. Here, the relevant length scale diverges because of the breakdown of the Lieb-Robinson bound on the velocity (i.e., unboundedness of ) rather than vanishing of the energy gap . The susceptibility to a change in the system parameter exhibits a singularity due to nonorthogonality of eigenstates. As an illustrative example, we present an exactly solvable model by generalizing Kitaev's toric-code model to a non-Hermitian regime.
Cite
@article{arxiv.1912.09045,
title = {Continuous Phase Transition without Gap Closing in Non-Hermitian Quantum Many-Body Systems},
author = {Norifumi Matsumoto and Kohei Kawabata and Yuto Ashida and Shunsuke Furukawa and Masahito Ueda},
journal= {arXiv preprint arXiv:1912.09045},
year = {2020}
}
Comments
7 + 5 pages, 1 + 2 figures