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Complex entanglement entropy for complex conformal field theory

Haruki Shimizu* and Kohei Kawabata†

  • Institute for Solid State Physics, University of Tokyo, Kashiwa, Chiba 277-8581, Japan

  • *Contact author: shimizu-haruki@issp.u-tokyo.ac.jp
  • †Contact author: kawabata@issp.u-tokyo.ac.jp

Phys. Rev. B 112, 085112 – Published 8 August, 2025

DOI: https://doi.org/10.1103/n578-ljd5

Abstract

Conformal field theory underlies critical ground states of quantum many-body systems. While conventional conformal field theory is associated with positive central charges, nonunitary conformal field theory with complex-valued central charges has recently been recognized as physically relevant. Here, we demonstrate that complex-valued entanglement entropy characterizes complex conformal field theory and critical phenomena of open quantum many-body systems. This is based on non-Hermitian reduced density matrices constructed from the combination of right and left ground states. Applying the density matrix renormalization group to non-Hermitian systems, we numerically calculate the complex entanglement entropy of the non-Hermitian five-state Potts model, thereby confirming the scaling behavior predicted by complex conformal field theory.

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