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Coherence of nonlinear Bloch dynamics of Bose–Einstein condensates in deep optical lattices

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【作者】 张爱霞张薇王杰胡潇文米来来薛具奎

【Author】 Ai-Xia Zhang;Wei Zhang;Jie Wang;Xiao-Wen Hu;Lai-Lai Mi;Ju-Kui Xue;College of Physics and Electronics Engineering, Northwest Normal University;

【通讯作者】 张爱霞;薛具奎;

【机构】 College of Physics and Electronics Engineering, Northwest Normal University

【摘要】 Atomic interaction leads to dephasing and damping of Bloch oscillations(BOs) in optical lattices, which limits observation and applications of BOs. How to obtain persistent BOs is particularly important. Here, the nonlinear Bloch dynamics of the Bose–Einstein condensate with two-body and three-body interactions in deep optical lattices is studied. The damping rate induced by interactions is obtained. The damping induced by two-body interaction plays a dominant role, while the damping induced by three-body interaction is weak. However, when the two-body and three-body interactions satisfy a threshold, long-lived coherent BOs are observed. Furthermore, the Bloch dynamics with periodical modulation of linear force is studied. The frequencies of linear force corresponding to resonance and pseudoresonance are obtained, and rich dynamical phenomena, i.e., stable and strong BOs, drifting and dispersion of wave packet, are predicted. The controllable Bloch dynamics is provided with the periodic modulation of the linear force.

【Abstract】 Atomic interaction leads to dephasing and damping of Bloch oscillations(BOs) in optical lattices, which limits observation and applications of BOs. How to obtain persistent BOs is particularly important. Here, the nonlinear Bloch dynamics of the Bose–Einstein condensate with two-body and three-body interactions in deep optical lattices is studied. The damping rate induced by interactions is obtained. The damping induced by two-body interaction plays a dominant role, while the damping induced by three-body interaction is weak. However, when the two-body and three-body interactions satisfy a threshold, long-lived coherent BOs are observed. Furthermore, the Bloch dynamics with periodical modulation of linear force is studied. The frequencies of linear force corresponding to resonance and pseudoresonance are obtained, and rich dynamical phenomena, i.e., stable and strong BOs, drifting and dispersion of wave packet, are predicted. The controllable Bloch dynamics is provided with the periodic modulation of the linear force.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 12264045, 12164042, 11764039, 11847304, and 11865014);the Natural Science Foundation of Gansu Province (Grant No. 17JR5RA07620JR5RA526);the Scientific Research Project of Gansu Higher Education (Grant No. 2016A-005);the Innovation Capability Enhancement Project of Gansu Higher Education (Grant Nos. 2020A146 and 2019A-014);the Creation of Science and Technology of Northwest Normal University (Grant No. NWNULKQN-18-33)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2024年04期
  • 【分类号】O469
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