Absence of Dipole Glass Transition for Randomly Dilute Classical Ising Dipoles
arXiv:cond-mat/0508560 · doi:10.1103/PhysRevB.72.214203
Abstract
Dilute dipolar systems in three dimensions are expected to undergo a spin glass transition as the temperature decreases. Contrary to this, we find from Wang-Landau Monte Carlo simulations that at low concentrations , dipoles randomly placed on a cubic lattice with dipolar interactions do not undergo a phase transition. We find that in the thermodynamic limit the ``glass'' transition temperature goes to zero as where is the number of dipoles. The entropy per particle at low temperatures is larger for lower concentrations () than for higher concentrations ().
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