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Rashba spin-orbit-coupled atomic Fermi gases

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posted on 2024-07-11, 07:36 authored by Lei Jiang, Xiaji LiuXiaji Liu, Hui HuHui Hu, Han Pu
We investigate theoretically BEC-BCS crossover physics in the presence of Rashba spin-orbit coupling in a system of a two-component Fermi gas with and without a Zeeman field that breaks the population balance between the two components. A bound state (Rashba pair) emerges because of the spin-orbit interaction. We study the properties of Rashba pairs using standard pair fluctuation theory. At zero temperature, the Rashba pairs condense into a macroscopic mixed-spin state. We discuss in detail the experimental signatures for observing the condensation of Rashba pairs by calculating various physical observables which characterize the properties of the system and can be measured in experiment.

Funding

Ultracold atomic Fermi gases in the strongly interacting regime: A new frontier of quantum many-body physics

Australian Research Council

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Imbalanced superfluidity: The quantum mystery that defies solution

Australian Research Council

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History

Available versions

PDF (Published version)

ISSN

1050-2947

Journal title

Physical Review A - Atomic, Molecular, and Optical Physics

Volume

84

Issue

6

Article number

article no. 063618

Pagination

063618-

Publisher

American Physical Society

Copyright statement

Copyright © 2011 American Physical Society. The published version is reproduced with the permission of the publisher.

Language

eng

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