Thermalization of long range Ising model in different dynamical regimes: a full counting statistics approach

Fuente: arXiv
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Main Authors: Ranabhat, Nishan, Collura, Mario
Format: Preprint
Published: 2022
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author Ranabhat, Nishan
Collura, Mario
author_facet Ranabhat, Nishan
Collura, Mario
contents We study thermalization of transverse field Ising chain with power law decaying interaction $\sim 1/r^α$ following a global quantum quench of the transverse field to two different dynamical regimes. We quantify the thermalization behavior by comparing the full probability distribution function (PDF) of the evolving states with the corresponding thermal state given by the Gibbs canonical ensemble (GCE). To this end, we use matrix product state (MPS) based time dependent variational principle (TDVP) algorithm to simulate both real time evolution following a global quantum quench and the finite temperature density operator. We observe that thermalization is strongly suppressed in the region with strong confinement for all the interaction strength $α$ considered whereas thermalization occurs in the region with weak confinement.
format Preprint
id arxiv_https___arxiv_org_abs_2212_00533
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Thermalization of long range Ising model in different dynamical regimes: a full counting statistics approach
Ranabhat, Nishan
Collura, Mario
Statistical Mechanics
Strongly Correlated Electrons
We study thermalization of transverse field Ising chain with power law decaying interaction $\sim 1/r^α$ following a global quantum quench of the transverse field to two different dynamical regimes. We quantify the thermalization behavior by comparing the full probability distribution function (PDF) of the evolving states with the corresponding thermal state given by the Gibbs canonical ensemble (GCE). To this end, we use matrix product state (MPS) based time dependent variational principle (TDVP) algorithm to simulate both real time evolution following a global quantum quench and the finite temperature density operator. We observe that thermalization is strongly suppressed in the region with strong confinement for all the interaction strength $α$ considered whereas thermalization occurs in the region with weak confinement.
title Thermalization of long range Ising model in different dynamical regimes: a full counting statistics approach
topic Statistical Mechanics
Strongly Correlated Electrons
url https://arxiv.org/abs/2212.00533