info:eu-repo/semantics/article
Ground-state entropy of ±J Ising lattices by Monte Carlo simulations
Fecha
2004-03-01Registro en:
Romá, Federico José; Nieto Quintas, Felix Daniel; Vogel, Eugenio Emilio; Ramirez Pastor, Antonio Jose; Ground-state entropy of ±J Ising lattices by Monte Carlo simulations; Springer; Journal of Statistical Physics; 114; 5-6; 1-3-2004; 1325-1341
0022-4715
1572-9613
CONICET Digital
CONICET
Autor
Romá, Federico José
Nieto Quintas, Felix Daniel
Vogel, Eugenio Emilio
Ramirez Pastor, Antonio Jose
Resumen
An accurate numerical calculation of the ground-state entropy associated to two-dimensional ±J Ising lattices is presented. The method is based on the use of the thermodynamic integration method. Total energy is calculated by means of the Monte Carlo method. Then the entropy (or degeneracy) of a state of interest is obtained by using thermodynamic integration starting at a known reference state. Results for small sizes are compared to exact values obtained by exhaustive scanning of the entire ground-state manifold, which serves as a test for the reliability of the simulation model developed here. The close agreement between simulated and exact results for energy and remnant entropy supports the validity of the technique used for describing the properties of ±J Ising lattices at the fundamental level. Finally, the results are extrapolated in order to estimate tendencies for larger systems.