Affiliation:
1. Indian Institute of Technology Kanpur
2. Ramakrishna Mission Vivekananda University
3. Homi Bhabha National Institute
4. Saha Institute of Nuclear Physics
5. Indian Association for the Cultivation of Science
Abstract
We show that a dynamical transition from a non-heating to a heating phase of a periodic SL(2,\mathbb{R})SL(2,ℝ) driven two dimensional conformal field theory (CFT) with a large central charge is perceived as a first order transition by a bulk brane embedded in the dual AdS. We construct the dual bulk metric corresponding to a driven CFT for both the heating and the non-heating phases. These metrics are different AdS_22 slices of the pure AdS_33 metric. We embed a brane in the obtained dual AdS space and provide an explicit computation of its free energy both in the probe limit and for an end-of-world (EOW) brane taking into account its backreaction. Our analysis indicates a finite discontinuity in the first derivative of the brane free energy as one moves from the non-heating to the heating phase (by tuning the drive amplitude and/or frequency of the driven CFT) thus demonstrating the presence of the bulk first order transition. Interestingly, no such transition is perceived by the bulk in the absence of the brane. We also provide explicit computations of two-point, four-point out-of-time correlators (OTOC) using the bulk picture. Our analysis shows that the structure of these correlators in different phases match their counterparts computed in the driven CFT. We analyze the effect of multiple EOW branes in the bulk and discuss possible extensions of our work for richer geometries and branes.
Funder
Council of Scientific and Industrial Research, India
Department of Atomic Energy, Government of India
Department of Science and Technology, Ministry of Science and Technology
Max Planck Society
University Grants Commission
Subject
General Physics and Astronomy
Cited by
1 articles.
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