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Reverse Rotation of Ring-Shaped Perturbation on Homogeneous Bose-Einstein Condensates

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【作者】 高鹏吴泽宇杨战营杨文力

【Author】 Peng Gao;Zeyu Wu;Zhan-Ying Yang;Wen-Li Yang;School of Physics,Northwest University;Shaanxi Key Laboratory for Theoretical Physics Frontiers;Department of Physics and Astronomy,University College London;Peng Huanwu Center for Fundamental Theory;Institute of modern Physics,Northwest University;

【通讯作者】 杨战营;

【机构】 School of Physics,Northwest UniversityShaanxi Key Laboratory for Theoretical Physics FrontiersDepartment of Physics and Astronomy,University College LondonPeng Huanwu Center for Fundamental TheoryInstitute of modern Physics,Northwest University

【摘要】 We numerically study the dynamics of rotating ring-shaped perturbation on two-dimensional homogeneous BoseEinstein condensates,where a new ring-shaped structure with reverse rotation appears.The reversely rotating mode is directly caused by the existence of the plane wave(namely the homogeneous background).By the modified linear stability analysis method,we quantitatively predict the influence of the background’s density on perturbation dynamics,including the velocity,amplitude,and frequency of the two rings.We construct an approximative solution to describe the short-lived dynamics of initial perturbation,which agrees well with our numerical results.Also,after the two rings separate,the transfer of atom number between them becomes linear,and the rate of transfer is impacted by the radial momentum of initial perturbation.

【Abstract】 We numerically study the dynamics of rotating ring-shaped perturbation on two-dimensional homogeneous BoseEinstein condensates,where a new ring-shaped structure with reverse rotation appears.The reversely rotating mode is directly caused by the existence of the plane wave(namely the homogeneous background).By the modified linear stability analysis method,we quantitatively predict the influence of the background’s density on perturbation dynamics,including the velocity,amplitude,and frequency of the two rings.We construct an approximative solution to describe the short-lived dynamics of initial perturbation,which agrees well with our numerical results.Also,after the two rings separate,the transfer of atom number between them becomes linear,and the rate of transfer is impacted by the radial momentum of initial perturbation.

【基金】 Supported by the National Natural Science Foundation of China (Grant Nos.11875220 and 12047502)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2021年09期
  • 【分类号】O469
  • 【下载频次】23
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