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Main Author: Yeh, Chen-Pin
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2310.00991
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author Yeh, Chen-Pin
author_facet Yeh, Chen-Pin
contents We study real-time correlators for $N=4$ super Yang Mill fields coupled to a pair of entangled quarks using holography, in the setup that energy quanta sent from one quark perturb the quantum state of the fields and affect the other quark. We make the connection with the ER=EPR conjecture by considering the situation when two quarks are uniformly accelerating opposite to each other. The dynamics of quarks, in the gravity dual, is described by the string worldsheet theory, which in this case has the induced metric describing a two-sided AdS black hole, or a wormhole. Energy quanta sent by one of the quarks produce the shock wave on the worldsheet. We find the effect of shock wave on the boundary field correlators and we discuss the consequence for the ER=EPR conjecture.
format Preprint
id arxiv_https___arxiv_org_abs_2310_00991
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Shock Waves in Holographic EPR pair
Yeh, Chen-Pin
High Energy Physics - Theory
We study real-time correlators for $N=4$ super Yang Mill fields coupled to a pair of entangled quarks using holography, in the setup that energy quanta sent from one quark perturb the quantum state of the fields and affect the other quark. We make the connection with the ER=EPR conjecture by considering the situation when two quarks are uniformly accelerating opposite to each other. The dynamics of quarks, in the gravity dual, is described by the string worldsheet theory, which in this case has the induced metric describing a two-sided AdS black hole, or a wormhole. Energy quanta sent by one of the quarks produce the shock wave on the worldsheet. We find the effect of shock wave on the boundary field correlators and we discuss the consequence for the ER=EPR conjecture.
title Shock Waves in Holographic EPR pair
topic High Energy Physics - Theory
url https://arxiv.org/abs/2310.00991