Giant vortex phase transition in rapidly rotating trapped Bose-Einstein condensates
Quantum Gases
2019-10-01 v1 Mathematical Physics
math.MP
Abstract
A Bose-Einstein condensate of cold atoms is a superfluid and thus responds to rotation of its container by the nucleation of quantized vortices. If the trapping potential is su ciently strong, there is no theoretical limit to the rotation frequency one can impose to the fluid, and several phase transitions characterized by the number and distribution of vortices occur when it is increased from zero to infinity. In this note we focus on a regime of very large rotation velocity where vortices disappear from the bulk of the fluid, gathering in a central hole of low matter density induced by the centrifugal force.
Cite
@article{arxiv.1210.7134,
title = {Giant vortex phase transition in rapidly rotating trapped Bose-Einstein condensates},
author = {Michele Correggi and Florian Pinsker and Nicolas Rougerie and Jakob Yngvason},
journal= {arXiv preprint arXiv:1210.7134},
year = {2019}
}
Comments
Contribution the proceedings of the conference "Theory of quantum gases and quantum coherence", Lyon 2012