Recently it has been suggested that long range magnetic dipolar interactions are responsible for spin ice behavior in the Ising pyrochlore magnets Dy2Ti2O7 and Ho2Ti2O7. We report here numerical results on the low temperature properties of the dipolar spin ice model, obtained via a new loop algorithm which greatly improves the dynamics at low temperature. We recover the previously reported missing entropy in this model, and find a first order transition to a long range ordered phase with zero total magnetization at very low temperature. We discuss the relevance of these results to Dy2Ti2O7 and Ho2Ti2O7.
@article{arxiv.cond-mat/0009225,
title = {Long Range Order at Low Temperature in Dipolar Spin Ice},
author = {Roger G. Melko and Byron C. den Hertog and Michel J. P. Gingras},
journal= {arXiv preprint arXiv:cond-mat/0009225},
year = {2009}
}
Comments
New version of the manuscript. Now contains 3 POSTSCRIPT figures as opposed to 2 figures. Manuscript contains a more detailed discussion of the (i) nature of long-range ordered ground state, (ii) finite-size scaling results of the 1st order transition into the ground state. Order of authors has been changed. Resubmitted to Physical Review Letters Contact: gingras@gandalf.uwaterloo.ca