This thesis studies (generalized) symmetry breaking in states via entanglement measures. Specifically, we study a relative entropy between a given state and a suitably defined symmetric version of the same state; obtained by applying a quantum channel made of the topological operators implementing the symmetry. We study this for both excited states in CFTs as well as symmetry breaking vacua. In the first part, following [1], we study a perturbative version of this asymmetry in CFTs for a U(1) symmetry in various geometries, and study the relaxation of such states in real time while displaying a quantum Mpemba effect. We also study the holography of entanglement asymmetry. In the second part, following [2], we study the symmetrization process for non-invertible symmetries in two spacetime dimensions. We identify the different symmetry algebras that act on a circle or interval hilbert space, and prescribe a universal, unique symmetrization procedure to compute symmetry breaking. We study examples in both CFTs and gapped symmetry breaking states.

Entanglement and Symmetry Breaking

SINGH, AMARTYA HARSH
2026

Abstract

This thesis studies (generalized) symmetry breaking in states via entanglement measures. Specifically, we study a relative entropy between a given state and a suitably defined symmetric version of the same state; obtained by applying a quantum channel made of the topological operators implementing the symmetry. We study this for both excited states in CFTs as well as symmetry breaking vacua. In the first part, following [1], we study a perturbative version of this asymmetry in CFTs for a U(1) symmetry in various geometries, and study the relaxation of such states in real time while displaying a quantum Mpemba effect. We also study the holography of entanglement asymmetry. In the second part, following [2], we study the symmetrization process for non-invertible symmetries in two spacetime dimensions. We identify the different symmetry algebras that act on a circle or interval hilbert space, and prescribe a universal, unique symmetrization procedure to compute symmetry breaking. We study examples in both CFTs and gapped symmetry breaking states.
18-set-2026
Inglese
Benini, Francesco
Donnay, Laura Marie C.
SISSA
Trieste
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14242/379507
Il codice NBN di questa tesi è URN:NBN:IT:SISSA-379507