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  4. From CFTs to theories with Bondi-Metzner-Sachs symmetries: Complexity and out-of-time-ordered correlators
 
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From CFTs to theories with Bondi-Metzner-Sachs symmetries: Complexity and out-of-time-ordered correlators

Source
Physical Review D
ISSN
24700010
Date Issued
2022-12-15
Author(s)
Banerjee, Aritra
Bhattacharyya, Arpan  
Drashni, Priya
Pawar, Srinidhi
DOI
10.1103/PhysRevD.106.126022
Volume
106
Issue
12
Abstract
We probe the contraction from 2d relativistic CFTs to theories with Bondi-Metzner-Sachs (BMS) symmetries, or equivalently conformal Carroll symmetries, using diagnostics of quantum chaos. Starting from an ultrarelativistic limit on a relativistic scalar field theory and following through at the quantum level using an oscillator representation of states, one can show the CFT2 vacuum evolves smoothly into a BMS3 vacuum in the form of a squeezed state. Computing circuit complexity of this transmutation using the covariance matrix approach shows clear divergences when the BMS point is hit or equivalently when the target state becomes a boundary state. We also find similar behavior of the circuit complexity calculated from methods of information geometry. Furthermore, we discuss the Hamiltonian evolution of the system and investigate out-of-time-ordered correlators and operator growth complexity, both of which turn out to scale polynomially with time at the BMS point.
Publication link
http://link.aps.org/pdf/10.1103/PhysRevD.106.126022
URI
https://d8.irins.org/handle/IITG2025/27079
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