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Ground-state phase diagram of a spin-orbital-angular-momentum coupled Bose-Einstein condensate

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posted on 2024-08-06, 11:57 authored by Dongfang Zhang, Tianyou Gao, Peng Zou, Lingran Kong, Ruizong Li, Xing Shen, Xiao-Long Chen, Shi-Guo Peng, Mingsheng Zhan, Han Pu, Kaijun Jiang
By inducing a Raman transition using a pair of Gaussian and Laguerre-Gaussian laser beams, we realize a Rb87 condensate whose orbital angular momentum (OAM) and its internal spin states are coupled. By varying the detuning and the coupling strength of the Raman transition, we experimentally map out the ground-state phase diagram of the system for the first time. The transitions between different phases feature a discontinuous jump of the OAM and the spin polarization, and hence are of first order. We demonstrate the hysteresis loop associated with such first-order phase transitions. The role of interatomic interaction is also elucidated. Our work paves the way to explore exotic quantum phases in the spin-orbital-angular-momentum coupled quantum gases.

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ISSN

0031-9007

Journal title

Physical Review Letters

Volume

122

Issue

11

Article number

article no. 110402

Publisher

American Physical Society (APS)

Copyright statement

Copyright © 2019 American Physical Society. The published version is reproduced in accordance with the copyright policy of the publisher.

Language

eng

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