Wigner-localized states in spin-orbit-coupled bosonic ultracold atoms with dipolar interaction
arXiv:1412.0505 · doi:10.1140/epjst/e2015-02385-y
Abstract
We investigate the occurence of Wigner-localization phenomena in bosonic dipolar ultracold few-body systems with Rashba-like spin-orbit coupling. We show that the latter strongly enhances the effects of the dipole-dipole interactions, allowing to reach the Wigner-localized regime for strengths of the dipole moment much smaller than those necessary in the spin-orbit-free case.
7 pages, 4 figures
References in corpus (9)
- Spin-Orbit Coupled Spinor Bose-Einstein Condensates
- Non-Abelian gauge potentials for ultra-cold atoms with degenerate dark states
- Quantum phases of a Two-Dimensional Dipolar Fermi Gas
- Emergent patterns in a spin-orbit coupled spin-2 Bose-Einstein condensate
- Strongly Correlated States of Ultracold Rotating Dipolar Fermi Gases
- Bosonic and fermionic dipoles on a ring
- Model independence in two dimensions and polarized cold dipolar molecules
- Ordered structures in rotating ultracold Bose gases
- Tunable Wigner States with Dipolar Atoms and Molecules