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Spin-orbit coupled weakly interacting bose-einstein condensates in harmonic traps

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posted on 2024-07-26, 14:06 authored by Hui HuHui Hu, B. Ramachandhran, Han Pu, Xiaji LiuXiaji Liu
We investigate theoretically the phase diagram of a spin-orbit coupled Bose gas in two-dimensional harmonic traps. We show that at strong spin-orbit coupling the single-particle spectrum decomposes into different manifolds separated by ℏω⊥, where ω⊥ is the trapping frequency. For a weakly interacting gas, quantum states with Skyrmion lattice patterns emerge spontaneously and preserve either parity symmetry or combined parity-time-reversal symmetry. These phases can be readily observed in a spin-orbit coupled gas of 87Rb atoms in a highly oblate trap.

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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Available versions

PDF (Published version)

ISSN

0031-9007

Journal title

Physical Review Letters

Volume

108

Issue

1

Article number

article no. 010402

Pagination

4 pp

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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