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Critical temperature of a Rashba spin-orbit-coupled Bose gas in a harmonic trap

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posted on 2024-07-11, 07:36 authored by Hui HuHui Hu, Xiaji LiuXiaji Liu
We investigate theoretically Bose-Einstein condensation of an ideal, trapped Bose gas in the presence of Rashba spin-orbit coupling. Analytic results for the critical temperature and condensate fraction are derived based on a semiclassical approximation to the single-particle-energy spectrum and density of states and are compared with exact results obtained by explicitly summing discrete energy levels for a small number of particles. We find a significant decrease of the critical temperature and of the condensate fraction due to finite spin-orbit coupling. For a large coupling strength and a finite number of particles N, the critical temperature scales as N 2/5 and N 2/3 in three and two dimensions, respectively, contrasted to the predictions of N 1/3 and N 1/2 in the absence of spin-orbit coupling. Finite-size corrections in three dimensions are also discussed.

Funding

ARC | DP0984522

ARC | DP0984637

Ultracold atomic Fermi gases in the strongly interacting regime: A new frontier of quantum many-body physics : Australian Research Council | DP0984522

Imbalanced superfluidity: The quantum mystery that defies solution : Australian Research Council (ARC) | DP0984637

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ISSN

1050-2947

Journal title

Phys. Rev. A

Volume

85

Issue

1

Article number

article no. 013619

Pagination

013619-

Publisher

American Physical Society

Copyright statement

Copyright © 2012 American Physical Society. The published version is reproduced with the permission of the publisher.

Language

eng

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