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Symmetry decomposition of relative entropies in conformal field theory

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TLDR
In this article, the symmetry resolution of relative entropies in the 1+1 dimensional free massless compact boson conformal field theory (CFT) was considered and the symmetry resolved Renyi relative entropy between one interval reduced density matrices of CFT primary states using the replica method was obtained.
Abstract
We consider the symmetry resolution of relative entropies in the 1+1 dimensional free massless compact boson conformal field theory (CFT) which presents an internal $U(1)$ symmetry. We calculate various symmetry resolved Renyi relative entropies between one interval reduced density matrices of CFT primary states using the replica method. By taking the replica limit, the symmetry resolved relative entropy can be obtained. We also take the XX spin chain model as a concrete lattice realization of this CFT to perform numerical computation. The CFT predictions are tested against exact numerical calculations finding perfect agreement.

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Symmetry-resolved entanglement in a long-range free-fermion chain

TL;DR: In this paper , the symmetry resolution of entanglement in the presence of long-range couplings is investigated, where the entropy of each symmetry sector is calculated via the charged moments of the reduced density matrix.

Dynamics of charge-imbalance-resolved entanglement negativity after a quench in a free-fermion model

TL;DR: In this article , the authors study the time evolution of charge-imbalance-resolved negativity after a global quench in the context of free-fermion systems, complementing former works for the symmetry resolved entanglement entropy.
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Exact hydrodynamic description of symmetry-resolved Rényi entropies after a quantum quench

TL;DR: In this paper , the authors investigated the non-equilibrium dynamics of the symmetry-resolved Rényi entropies in a one-dimensional gas of noninteracting spinless fermions by means of quantum generalised hydrodynamics, which recently allowed to obtain very accurate results for the total entanglement in inhomogeneous quench settings.
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Thermodynamic symmetry resolved entanglement entropies in integrable systems

TL;DR: In this paper , the symmetry-resolved Rényi and von Neumann entanglement entropies (SREE) of thermodynamic macrostates in interacting integrable systems were derived based on a combination of the thermodynamic Bethe ansatz and the Gärtner-Ellis theorem from large deviation theory.
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Branch Point Twist Field Form Factors in the sine-Gordon Model II: Composite Twist Fields and Symmetry Resolved Entanglement

- 10 Mar 2022 - 
TL;DR: In this article , the symmetry resolved entanglement (SWE) measure was introduced in the sine-Gordon model and its associated twist field description was developed, exploiting the underlying U(1) symmetry of the theory, and the resulting composite twist field has correlators which as usual admit a form factor expansion.
References
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Journal ArticleDOI

The Large N limit of superconformal field theories and supergravity

TL;DR: In this article, it was shown that the large-N limits of certain conformal field theories in various dimensions include in their Hilbert space a sector describing supergravityon the product of anti-de Sitter spacetimes, spheres, and other compact manifolds.
Journal ArticleDOI

Particle Creation by Black Holes

TL;DR: In this article, it is shown that quantum mechanical effects cause black holes to create and emit particles as if they were hot bodies with temperature, which leads to a slow decrease in the mass of the black hole and to its eventual disappearance.
Book

Conformal Field Theory

TL;DR: This paper developed conformal field theory from first principles and provided a self-contained, pedagogical, and exhaustive treatment, including a great deal of background material on quantum field theory, statistical mechanics, Lie algebras and affine Lie algesas.
Journal ArticleDOI

Entanglement in many-body systems

TL;DR: In this article, the properties of entanglement in many-body systems are reviewed and both bipartite and multipartite entanglements are considered, and the zero and finite temperature properties of entangled states in interacting spin, fermion and boson model systems are discussed.
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