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States, symmetries and correlators of $T\bar{T}$ and $ J\bar{T} $ symmetric orbifolds

by Soumangsu Chakraborty, Silvia Georgescu, Monica Guica

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Submission summary

Authors (as registered SciPost users): Silvia Georgescu
Submission information
Preprint Link: https://arxiv.org/abs/2306.16454v1  (pdf)
Date submitted: 2023-08-02 12:36
Submitted by: Georgescu, Silvia
Submitted to: SciPost Physics
Ontological classification
Academic field: Physics
Specialties:
  • High-Energy Physics - Theory

Abstract

We derive various properties of symmetric product orbifolds of $T\bar{T}$ and $J\bar{T}$ - deformed CFTs from a field-theoretical perspective. First, we generalise the known formula for the torus partition function of a symmetric orbifold theory in terms of the one of the seed to non-conformal two-dimensional QFTs; specialising this to seed $T\bar{T}$ and $J\bar{T}$ - deformed CFTs reproduces previous results in the literature. Second, we show that the single-trace $T\bar{T}$ and $J\bar{T}$ deformations preserve the Virasoro and Kac-Moody symmetries of the undeformed symmetric product orbifold CFT, including their fractional counterparts, as well as the KdV charges. Finally, we discuss correlation functions in these theories. By extending a previously-proposed basis of operators for $J\bar{T}$ - deformed CFTs to the single-trace case, we explicitly compute the correlation functions of both untwisted and twisted-sector operators and compare them to an appropriate set of holographic correlators. Our derivations are based mainly on Hilbert space techniques and completely avoid the use of conformal invariance, which is not present in these models.

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Reports on this Submission

Report #2 by Anonymous (Referee 2) on 2023-10-13 (Invited Report)

  • Cite as: Anonymous, Report on arXiv:2306.16454v1, delivered 2023-10-13, doi: 10.21468/SciPost.Report.7939

Report

I recommend this paper for publication in SciPost, provided the comments in the attached report are addressed.

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Report #1 by Anonymous (Referee 1) on 2023-8-28 (Invited Report)

  • Cite as: Anonymous, Report on arXiv:2306.16454v1, delivered 2023-08-28, doi: 10.21468/SciPost.Report.7732

Report

The authors have provided detailed analyses and provided several useful results concerning the three points mentioned in item (1) of the report attached below. I recommend the paper for publication provided the authors answer the questions raised in the report in item (2) properly.

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