Rotating quantum liquids crystallize
arXiv:cond-mat/0602039 · doi:10.1088/1367-2630/8/4/059
Abstract
Small crystallites form when finite quantal systems are set highly rotating. This crystallization is independent of the statistics of the particles, and occurs for both trapped bosons and fermions. The spin degree of freedom does not change the tendency for localization. In a highly rotating state, the strongly correlated bosonic and fermionic systems approach to that of classical particles.
14 pages 6 figures
References in corpus (1)
Cited by in corpus (7)
- Ordered structures in rotating ultracold Bose gases
- Rapidly rotating boson molecules with long or short range repulsion: an exact diagonalization study
- Semiconductor quantum dots in high magnetic fields: The composite-fermion view
- Vortex localization in rotating clouds of bosons and fermions
- Spin-dependent Rotating Wigner Molecules in Quantum dots
- Spectral properties of rotating electrons in quantum dots and their relation to quantum Hall liquids
- Localization of particles in harmonic confinement: Effect of the interparticle interaction