Thermodynamics from a scaling Hamiltonian
Abstract
There are problems with defining the thermodynamic limit of systems with long-range interactions; as a result, the thermodynamic behavior of these types of systems is anomalous. In the present work, we review some concepts from both extensive and nonextensive thermodynamic perspectives. We use a model, whose Hamiltonian takes into account spins ferromagnetically coupled in a chain via a power law that decays at large interparticle distance as for . Here, we review old nonextensive scaling. In addition, we propose a new Hamiltonian scaled by that explicitly includes symmetry of the lattice and dependence on the size, , of the system. The new approach enabled us to improve upon previous results. A numerical test is conducted through Monte Carlo simulations. In the model, periodic boundary conditions are adopted to eliminate surface effects.
Cite
@article{arxiv.0710.5644,
title = {Thermodynamics from a scaling Hamiltonian},
author = {L. A. del Pino and P. Troncoso and S. Curilef},
journal= {arXiv preprint arXiv:0710.5644},
year = {2009}
}
Comments
12 pages, 2 figures, submitted for publication to Phys. Rev. B