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Dynamics of spinor Bose–Einstein condensate subject to dissipation
引用本文:庞曼曼,郝亚江.Dynamics of spinor Bose–Einstein condensate subject to dissipation[J].中国物理 B,2016,25(4):40501-040501.
作者姓名:庞曼曼  郝亚江
作者单位:Department of Physics, University of Science and Technology Beijing, Beijing 100083, China
基金项目:Project supported by the National Natural Science Foundation of China (Grant No. 11004007) and the Fundamental Research Funds for the Central Universities of China.
摘    要:We investigate the internal dynamics of the spinor Bose–Einstein condensates subject to dissipation by solving the Lindblad master equation. It is shown that for the condensates without dissipation its dynamics always evolve along a specific orbital in the phase space of(n_0, θ) and display three kinds of dynamical properties including Josephson-like oscillation, self-trapping-like oscillation, and ‘running phase'. In contrast, the condensates subject to dissipation will not evolve along the specific dynamical orbital. If component-1 and component-(-1) dissipate at different rates, the magnetization m will not conserve and the system transits between different dynamical regions. The dynamical properties can be exhibited in the phase space of(n_0, θ, m).

收稿时间:2015-10-19

Dynamics of spinor Bose-Einstein condensate subject to dissipation
Institution:Department of Physics, University of Science and Technology Beijing, Beijing 100083, China
Abstract:We investigate the internal dynamics of the spinor Bose-Einstein condensates subject to dissipation by solving the Lindblad master equation. It is shown that for the condensates without dissipation its dynamics always evolve along a specific orbital in the phase space of (n0, θ) and display three kinds of dynamical properties including Josephson-like oscillation, self-trapping-like oscillation, and ‘running phase'. In contrast, the condensates subject to dissipation will not evolve along the specific dynamical orbital. If component-1 and component-(-1) dissipate at different rates, the magnetization m will not conserve and the system transits between different dynamical regions. The dynamical properties can be exhibited in the phase space of (n0, θ, m).
Keywords:spinor Bose-Einstein condensates  dissipation  master equation  
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