Critical velocities for energy dissipation from periodic motions of impurity in Bose—Einstein condensates

J. Suzuki
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引用次数: 2

Abstract

A phenomenon of energy dissipation in Bose—Einstein condensates is studied based on a microscopic model for the motion of impurity. Critical velocities for the onset of energy dissipation are obtained for periodic motions, such as a dipole-like oscillation and a circular motion. The first example is similar to a series of MIT group experiments settings where the critical velocity was observed much below the Landau critical velocity. The appearance of the smaller values for the critical velocity is also found in our model, even in the homogeneous condensate in the thermodynamic limit. This suggests that the Landau criterion be reexamined in the absence of quantized vortices even in the bulk limit.
玻色-爱因斯坦凝聚体中杂质周期性运动能量耗散的临界速度
基于杂质运动的微观模型,研究了玻色-爱因斯坦凝聚体中的能量耗散现象。对于周期性运动,如偶极子振荡和圆周运动,获得了能量耗散开始的临界速度。第一个例子类似于麻省理工学院的一系列小组实验设置,其中观察到的临界速度远低于朗道临界速度。在我们的模型中,甚至在热力学极限的均匀凝结水中,临界速度也出现了较小的值。这表明在没有量化涡的情况下,即使在体积极限下,也可以重新检验朗道判据。
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