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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Finite-temperature dynamics of a single vortex in a Bose-Einstein condensate: Equilibrium precession and rotational symmetry breaking
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Finite-temperature dynamics of a single vortex in a Bose-Einstein condensate: Equilibrium precession and rotational symmetry breaking

机译:Bose-Einstein冷凝物中单个涡旋的有限温度动力学:平衡进动和旋转对称破坏

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We consider a finite-temperature Bose-Einstein condensate in a quasi-two-dimensional trap containing a single precessing vortex. We find that such a configuration arises naturally as an ergodic equilibrium of the projected Gross-Pitaevskii equation, when constrained to a finite conserved angular momentum. In an isotropic trapping potential, the condensation of the classical field into an off-axis vortex state breaks the rotational symmetry of the system. We present a methodology to identify the condensate and the Goldstone mode associated with the broken rotational symmetry in the classical-field model. We also examine the variation in vortex trajectories and thermodynamic parameters of the field as the energy of the microcanonical field simulation is varied
机译:我们考虑了包含单个进动旋涡的准二维阱中的有限温度玻色-爱因斯坦冷凝物。我们发现,当约束到有限的守恒角动量时,这种构型自然会作为预计的Gross-Pitaevskii方程的遍历平衡而出现。在各向同性的俘获势中,经典场向轴外涡旋状态的凝结破坏了系统的旋转对称性。我们提出一种方法来识别与经典场模型中的旋转对称性破坏相关的凝结水和戈德斯通模式。随着微经典场模拟能量的变化,我们还研究了场的涡旋轨迹和热力学参数的变化。

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