Back to Search
Start Over
Ultra-Fast Converging Path-Integral Approach for Rotating Ideal Bose-Einstein Condensates
- Source :
- Phys. Lett. A 374 (2010) 1539
- Publication Year :
- 2010
-
Abstract
- A recently developed efficient recursive approach for analytically calculating the short-time evolution of the one-particle propagator to extremely high orders is applied here for numerically studying the thermodynamical and dynamical properties of a rotating ideal Bose gas of $^{87}$Rb atoms in an anharmonic trap. At first, the one-particle energy spectrum of the system is obtained by diagonalizing the discretized short-time propagator. Using this, many-boson properties such as the condensation temperature, the ground-state occupancy, density profiles, and time-of-flight absorption pictures are calculated for varying rotation frequencies. The obtained results improve previous semiclassical calculations, in particular for smaller particle numbers. Furthermore, we find that typical time scales for a free expansion are increased by an order of magnitude for the delicate regime of both critical and overcritical rotation.<br />Comment: 15 pages, 12 figures, uses elsarticle.cls
Details
- Database :
- arXiv
- Journal :
- Phys. Lett. A 374 (2010) 1539
- Publication Type :
- Report
- Accession number :
- edsarx.1001.1463
- Document Type :
- Working Paper
- Full Text :
- https://doi.org/10.1016/j.physleta.2010.01.034