Dynamic Phase Transition in 2D Ising Systems: Effect of Anisotropy and Defects

Fuente: arXiv
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Autores principales: Ettori, Federico, Coupé, Thibaud, Sluckin, Timothy J., Puppin, Ezio, Biscari, Paolo
Formato: Preprint
Publicado: 2023
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author Ettori, Federico
Coupé, Thibaud
Sluckin, Timothy J.
Puppin, Ezio
Biscari, Paolo
author_facet Ettori, Federico
Coupé, Thibaud
Sluckin, Timothy J.
Puppin, Ezio
Biscari, Paolo
contents We investigate the dynamic phase transition in two-dimensional Ising models whose equilibrium characteristics are influenced by either anisotropic interactions or quenched defects. The presence of anisotropy reduces the dynamical critical temperature, leading to the expected result that the critical temperature approaches zero in the full-anisotropy limit. We show that a comprehensive understanding of the dynamic behavior of systems with quenched defects requires a generalized definition of the dynamic order parameter. By doing so, we demonstrate that the inclusion of quenched defects lowers the dynamic critical temperature as well, with a linear trend across the range of defect fractions considered. We also explore if and how it is possible to predict the dynamic behavior of specific magnetic systems with quenched randomness. Various geometric quantities, such as a defect potential index, the defect dipole moment, and the properties of the defect Delaunay triangulation, prove useful for this purpose.
format Preprint
id arxiv_https___arxiv_org_abs_2312_00153
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Dynamic Phase Transition in 2D Ising Systems: Effect of Anisotropy and Defects
Ettori, Federico
Coupé, Thibaud
Sluckin, Timothy J.
Puppin, Ezio
Biscari, Paolo
Statistical Mechanics
We investigate the dynamic phase transition in two-dimensional Ising models whose equilibrium characteristics are influenced by either anisotropic interactions or quenched defects. The presence of anisotropy reduces the dynamical critical temperature, leading to the expected result that the critical temperature approaches zero in the full-anisotropy limit. We show that a comprehensive understanding of the dynamic behavior of systems with quenched defects requires a generalized definition of the dynamic order parameter. By doing so, we demonstrate that the inclusion of quenched defects lowers the dynamic critical temperature as well, with a linear trend across the range of defect fractions considered. We also explore if and how it is possible to predict the dynamic behavior of specific magnetic systems with quenched randomness. Various geometric quantities, such as a defect potential index, the defect dipole moment, and the properties of the defect Delaunay triangulation, prove useful for this purpose.
title Dynamic Phase Transition in 2D Ising Systems: Effect of Anisotropy and Defects
topic Statistical Mechanics
url https://arxiv.org/abs/2312.00153