Irreversibility by competition on a Glauber-Ising model by means of the entropy production.


Autoria(s): Bohorquez, Oscar Alberto Barbosa; Tome, Tania
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

16/04/2014

16/04/2014

13/05/2013

Resumo

An out of equilibrium Ising model subjected to an irreversible dynamics is analyzed by means of a stochastic dynamics, on a effort that aims to understand the observed critical behavior as consequence of the intrinsic microscopic characteristics. The study focus on the kinetic phase transitions that take place by assuming a lattice model with inversion symmetry and under the influence of two competing Glauber dynamics, intended to describe the stationary states using the entropy production, which characterize the system behavior and clarifies its reversibility conditions. Thus, it is considered a square lattice formed by two sublattices interconnected, each one of which is in contact with a heat bath at different temperature from the other. Analytical and numerical treatments are faced, using mean-field approximations and Monte Carlo simulations. For the one dimensional model exact results for the entropy production were obtained, though in this case the phase transition that takes place in the two dimensional counterpart is not observed, fact which is in accordance with the behavior shared by lattice models presenting inversion symmetry. Results found for the stationary state show a critical behavior of the same class as the equilibrium Ising model with a phase transition of the second order, which is evidenced by a divergence with an exponent µ ¼ 0:003 of the entropy production derivative.

Identificador

Encontro Nacional de Física da Matéria Condensada, XXXVI, 2013, Águas de Lindóia.

http://www.producao.usp.br/handle/BDPI/44526

http://www.sbf1.sbfisica.org.br/eventos/enfmc/xxxvi/sys/resumos/R0595-1.pdf

Idioma(s)

eng

Publicador

Sociedade Brasileira de Física

Águas de Lindóia

Relação

Encontro Nacional de Física da Matéria Condensada, XXXVI

Direitos

openAccess

Oscar Barbosa

Palavras-Chave #Glauber-Ising model #Entropy production #Stochastic dynamics #Matéria condensada #Dinâmica #Entropia
Tipo

conferenceObject

Resumo