Entanglement of General Subregions in Time-Dependent States

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Guo, Wu-zhong, He, Song, Liu, Tao
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915700642152448
author Guo, Wu-zhong
He, Song
Liu, Tao
author_facet Guo, Wu-zhong
He, Song
Liu, Tao
contents We develop a unified framework for computing Rényi and entanglement entropies of arbitrary spacetime intervals in time-dependent states of $(1+1)$-dimensional conformal field theories. By combining the spacetime density matrix formalism with the replica method, we show that entanglement entropy is well defined for both spacelike and timelike separations. Applying this framework to global quenches prepared by boundary states and to local quenches generated by operator insertions, we obtain analytic expressions for the entanglement entropy in general spacetime configurations. The results reveal qualitative differences between spacelike and timelike intervals: the timelike entanglement entropy is time-independent in the global quench model, depends solely on the temporal separation, and universally exhibits a constant imaginary contribution. These features are naturally explained by a generalized quasiparticle picture in which entanglement is produced precisely when one worldline of each quasiparticle pair intersects the interval. Furthermore, we demonstrate that the linear sum rule relating time- and spacelike entanglement persists in both global and local quenches, indicating a broader universality of spacetime entanglement in real-time quantum dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2512_19955
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement of General Subregions in Time-Dependent States
Guo, Wu-zhong
He, Song
Liu, Tao
High Energy Physics - Theory
Statistical Mechanics
General Relativity and Quantum Cosmology
We develop a unified framework for computing Rényi and entanglement entropies of arbitrary spacetime intervals in time-dependent states of $(1+1)$-dimensional conformal field theories. By combining the spacetime density matrix formalism with the replica method, we show that entanglement entropy is well defined for both spacelike and timelike separations. Applying this framework to global quenches prepared by boundary states and to local quenches generated by operator insertions, we obtain analytic expressions for the entanglement entropy in general spacetime configurations. The results reveal qualitative differences between spacelike and timelike intervals: the timelike entanglement entropy is time-independent in the global quench model, depends solely on the temporal separation, and universally exhibits a constant imaginary contribution. These features are naturally explained by a generalized quasiparticle picture in which entanglement is produced precisely when one worldline of each quasiparticle pair intersects the interval. Furthermore, we demonstrate that the linear sum rule relating time- and spacelike entanglement persists in both global and local quenches, indicating a broader universality of spacetime entanglement in real-time quantum dynamics.
title Entanglement of General Subregions in Time-Dependent States
topic High Energy Physics - Theory
Statistical Mechanics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2512.19955