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Emergence of topological and strongly correlated ground states in trapped Rashba spin-orbit-coupled Bose gases

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posted on 2024-07-26, 14:03 authored by B. Ramachandhran, Hui HuHui Hu, Han Pu
We theoretically study an interacting few-body system of Rashba spin-orbit-coupled two-component Bose gases confined in a harmonic trapping potential. We solve the interacting Hamiltonian at large Rashba coupling strengths using an exact-diagonalization scheme, and obtain the ground-state phase diagram for a range of interatomic interactions and particle numbers. At small particle numbers, we observe that the bosons condense to an array of topological states with n+1/2 quantum angular momentum vortex configurations, where n=0,1,2,3,.... At large particle numbers, we observe two distinct regimes: at weaker-interaction strengths, we obtain ground states with topological and symmetry properties that are consistent with mean-field theory computations; at stronger-interaction strengths, we report the emergence of strongly correlated ground states.

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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PDF (Published version)

ISSN

1050-2947

Journal title

Physical Review A - Atomic, Molecular, and Optical Physics

Volume

87

Issue

3

Article number

article no. 033627

Pagination

12 pp

Publisher

American Physical Society

Copyright statement

Copyright © 2013 American Physical Society. the published version is reproduced with the permission of the publisher.

Language

eng

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