Entropy, entanglement and susceptibility of three qubits near quantum criticality

Fuente: arXiv
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Autori principali: Castorene, Bastian, Peña, Francisco J., Norambuena, Ariel, Ulloa, Sergio E., Araya, Cristobal, Vargas, Patricio
Natura: Preprint
Pubblicazione: 2024
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author Castorene, Bastian
Peña, Francisco J.
Norambuena, Ariel
Ulloa, Sergio E.
Araya, Cristobal
Vargas, Patricio
author_facet Castorene, Bastian
Peña, Francisco J.
Norambuena, Ariel
Ulloa, Sergio E.
Araya, Cristobal
Vargas, Patricio
contents This work investigates a system of three entangled qubits within the XXX model, subjected to an external magnetic field in the $z$-direction and incorporating an anisotropy term along the $y$-axis. We explore the thermodynamics of the system by calculating its magnetic susceptibility and analyzing how this quantity encodes information about entanglement. By deriving rigorous bounds for susceptibility, we demonstrate that their violation serves as an entanglement witness. Our results show that anisotropy enhances entanglement, extending the temperature range over which it persists. Additionally, by tracing over the degrees of freedom of two qubits, we examine the reduced density matrix of the remaining qubits and find that its entropy under the influence of the magnetic field can be mapped to an effective thermal bath at $(B,K) > 0$ K.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16133
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Entropy, entanglement and susceptibility of three qubits near quantum criticality
Castorene, Bastian
Peña, Francisco J.
Norambuena, Ariel
Ulloa, Sergio E.
Araya, Cristobal
Vargas, Patricio
Statistical Mechanics
This work investigates a system of three entangled qubits within the XXX model, subjected to an external magnetic field in the $z$-direction and incorporating an anisotropy term along the $y$-axis. We explore the thermodynamics of the system by calculating its magnetic susceptibility and analyzing how this quantity encodes information about entanglement. By deriving rigorous bounds for susceptibility, we demonstrate that their violation serves as an entanglement witness. Our results show that anisotropy enhances entanglement, extending the temperature range over which it persists. Additionally, by tracing over the degrees of freedom of two qubits, we examine the reduced density matrix of the remaining qubits and find that its entropy under the influence of the magnetic field can be mapped to an effective thermal bath at $(B,K) > 0$ K.
title Entropy, entanglement and susceptibility of three qubits near quantum criticality
topic Statistical Mechanics
url https://arxiv.org/abs/2410.16133