Numerical investigations of the extensive entanglement Hamiltonian in quantum spin ladders

Author:

Li ChengshuORCID,Li Xingyu,Zhou Yi-Neng

Abstract

AbstractEntanglement constitutes one of the key concepts in quantum mechanics and serves as an indispensable tool in the understanding of quantum many-body systems. In this work, we perform extensive numerical investigations of extensive entanglement properties of coupled quantum spin chains. This setup has proven useful for e.g. extending the Lieb–Schultz–Mattis theorem to open systems, and contrasts the majority of previous research where the entanglement cut has one lower dimension than the system. We focus on the cases where the entanglement Hamiltonian is either gapless or exhibits spontaneous symmetry breaking behavior. We further employ conformal field theoretical formulae to identify the universal behavior in the former case. The results in our work can serve as a paradigmatic starting point for more systematic exploration of the largely uncharted physics of extensive entanglement, both analytical and numerical.

Funder

Innovation Program for Quantum Science and Technology

the Beijing Outstanding Young Scholar Program

XPLORER Prize

Postdoctoral Research Foundation of China

Publisher

Springer Science and Business Media LLC

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