Worldsheet computation of heavy-light correlators

Author:

Bufalini DavideORCID,Iguri Sergio,Kovensky Nicolas,Turton David

Abstract

Abstract We compute a large collection of string worldsheet correlators describing light probes interacting with heavy black hole microstates. The heavy states consist of NS5 branes carrying momentum and/or fundamental string charge. In the fivebrane decoupling limit, worldsheet string theory on a family of such backgrounds is given by exactly solvable null-gauged WZW models. We construct physical vertex operators in these cosets, including all massless fluctuations. We compute a large class of novel heavy-light-light-heavy correlators in the AdS3 limit, where the light operators include those dual to chiral primaries of the holographically dual CFT. We compare a subset of these correlators to the holographic CFT at the symmetric product orbifold point, and find precise agreement in all cases, including for light operators in twisted sectors of the orbifold CFT. The agreement is highly non-trivial, and includes amplitudes that describe the analogue of Hawking radiation for these microstates. We further derive a formula for worldsheet correlators consisting of n light insertions on these backgrounds, and discuss which subset of these correlators are likely to be protected. As a test, we compute a heavy-light five-point function, obtaining precisely the same result both from the worldsheet and the symmetric orbifold CFT. This paper is a companion to and extension of [1].

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Evolutionary Algorithms for Multi‐Center Solutions;Fortschritte der Physik;2023-12-30

2. AdS3 orbifolds, BTZ black holes, and holography;Journal of High Energy Physics;2023-10-04

3. A 4d non-BPS NS-NS microstate;Journal of High Energy Physics;2023-09-18

4. Vector Superstrata;Journal of High Energy Physics;2023-08-10

5. Spectral flow and the exact AdS3/CFT2 chiral ring;Journal of High Energy Physics;2023-08-08

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