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Ultra-fast converging path-integral approach for rotating ideal Bose-Einstein condensates

  • 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 Rb-87 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.

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Author details:Antun Balaž, Ivana Vidanovic, Aleksandar Bogojević, Axel Pelster
URL:http://www.sciencedirect.com/science/journal/03759601
DOI:https://doi.org/10.1016/j.physleta.2010.01.034
ISSN:0375-9601
Publication type:Article
Language:English
Year of first publication:2010
Publication year:2010
Release date:2017/03/25
Source:Physics letters A. - ISSN 0375-9601. - 374 (2010), 13-14, S. 1539 - 1549
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
Peer review:Referiert
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