Nematic Order by Disorder in Spin-2 BECs
Abstract
The effect of quantum and thermal fluctuations on the phase diagram of spin-2 BECs is examined. They are found to play an important role in the nematic part of the phase diagram, where a mean-field treatment of two-body interactions is unable to lift the accidental degeneracy between nematic states. Quantum and thermal fluctuations resolve this degeneracy, selecting the uniaxial nematic state, for scattering lengths , and the square biaxial nematic state for . Paradoxically, the fluctuation induced order is stronger at higher temperatures, for a range of temperatures below . For the experimentally relevant cases of spin-2 Rb and Na, we argue that such fluctuations could successfully compete against other effects like the quadratic Zeeman field, and stabilize the uniaxial phase for experimentally realistic conditions. A continuous transition of the Ising type from uniaxial to square biaxial order is predicted on raising the magnetic field. These systems present a promising experimental opportunity to realize the `order by disorder' phenomenon.
Cite
@article{arxiv.cond-mat/0702057,
title = {Nematic Order by Disorder in Spin-2 BECs},
author = {Ari Turner and Ryan Barnett and Eugene Demler and Ashvin Vishwanath},
journal= {arXiv preprint arXiv:cond-mat/0702057},
year = {2012}
}
Comments
5 pages, 4 figures; 1 reference and 1 minor correction