Two-dimensional bright solitons in dipolar Bose-Einstein condensates with tilted dipoles
Abstract
The effect of dipolar orientation with respect to the soliton plane on the physics of two-dimensional bright solitons in dipolar Bose-Einstein condensates is discussed. Previous studies on such a soliton involved dipoles either perpendicular or parallel to the condensate plane. The tilting angle constitutes an additional tuning parameter, which helps us to control the in-plane anisotropy of the soliton as well as provides access to previously disregarded regimes of interaction parameters for soliton stability. In addition, it can be used to drive the condensate into phonon instability without changing its interaction parameters or trap geometry. The phonon instability in a homogeneous two-dimensional condensate of tilted dipoles always features a transient stripe pattern, which eventually breaks into a metastable soliton gas. Finally, we demonstrate how a dipolar BEC in a shallow trap can eventually be turned into a self-trapped matter wave by an adiabatic approach involving the tuning of the tilting angle.
- Publication:
-
Physical Review A
- Pub Date:
- July 2015
- DOI:
- 10.1103/PhysRevA.92.013637
- arXiv:
- arXiv:1506.02254
- Bibcode:
- 2015PhRvA..92a3637R
- Keywords:
-
- 67.85.Bc;
- 67.85.De;
- 67.85.Jk;
- Static properties of condensates;
- Dynamic properties of condensates;
- excitations and superfluid flow;
- Other Bose-Einstein condensation phenomena;
- Condensed Matter - Quantum Gases;
- Nonlinear Sciences - Pattern Formation and Solitons
- E-Print:
- 8 pages, 7 figures