Comments on entanglement entropy in the c = 1 string theory

A bstract We study entanglement entropy in the low-energy effective field theory of two-dimensional string theory as well as in the singlet sector of the dual c = 1 matrix quantum mechanics. From the target space perspective, we argue that a generic bulk subregion is expected to have an associated generalized entanglement entropy combining a dilaton-dependent gravitational term and a matter contribution coming from the tachyon, extending the construction from black hole horizons to arbitrary subregions. Motivated by the absence of the gravitational area-like term in previous analyses of entanglement entropy in the c = 1 model, we compute the effect on the entanglement entropy of the nonlocal transformation induced by the leg-pole factor that relates the target space tachyon and the matrix model collective excitations, finding that it cannot account for the area-like term. We offer preliminary comments on the possible origin of the area term in the non-singlet sectors of the theory.

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Publication Details

Journal
Journal of High Energy Physics
Published
2026-09-01
DOI
https://doi.org/10.1007/jhep09(2026)014
Primary Topic
Black Holes and Theoretical Physics
Type
article
Field-Weighted Citation Impact
0.00

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article

Comments on entanglement entropy in the c = 1 string theory

Marius Gerbershagen, Ben Craps, Alejandro Vilar López, Maxim Pavlov
Journal of High Energy Physics
Black Holes and Theoretical Physics
article

Comments on entanglement entropy in the c = 1 string theory

Marius Gerbershagen, Ben Craps, Alejandro Vilar López, Maxim Pavlov
article en

Abstract

A bstract We study entanglement entropy in the low-energy effective field theory of two-dimensional string theory as well as in the singlet sector of the dual c = 1 matrix quantum mechanics. From the target space perspective, we argue that a generic bulk subregion is expected to have an associated generalized entanglement entropy combining a dilaton-dependent gravitational term and a matter contribution coming from the tachyon, extending the construction from black hole horizons to arbitrary subregions. Motivated by the absence of the gravitational area-like term in previous analyses of entanglement entropy in the c = 1 model, we compute the effect on the entanglement entropy of the nonlocal transformation induced by the leg-pole factor that relates the target space tachyon and the matrix model collective excitations, finding that it cannot account for the area-like term. We offer preliminary comments on the possible origin of the area term in the non-singlet sectors of the theory.

Journal of High Energy PhysicsVol. 2026(9)
University of British Columbia (CA), International Solvay Institutes (BE)
Fonds Wetenschappelijk Onderzoek, Vlaamse regering, Natural Sciences and Engineering Research Council of Canada
Affordable and clean energy
Openalex Percentile: Top 12%
Black Holes and Theoretical Physics
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