Quantum Phases of Vortices in Rotating Bose-Einstein Condensates
Preprint
- 30 June 2001
Abstract
We investigate the groundstates of weakly interacting bosons in a rotating trap as a function of the number of bosons, $N$, and the average number of vortices, $N_V$. We identify the filling fraction $\nu\equiv N/N_V$ as the parameter controlling the nature of these states. We present results indicating that, as a function of $\nu$, there is a zero temperature {\it phase transition} between a triangular vortex lattice phase, and strongly-correlated vortex liquid phases. The vortex liquid phases appear to be the Read-Rezayi parafermion states.
All Related Versions
- Version 1, 2001-06-30, ArXiv
- Published version: Physical Review Letters, 87 (12), 120405.