首页> 外文期刊>Journal of Low Temperature Physics >Bogoliubov Theory for a Superfluid Bose Gas Flowing in a Random Potential: Stability and Critical Velocity
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Bogoliubov Theory for a Superfluid Bose Gas Flowing in a Random Potential: Stability and Critical Velocity

机译:Bogoliubov在随机潜力中流动的超流体瓶气的理论:稳定性和临界速度

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摘要

We investigate the stability and critical velocity of a weakly interacting Bose gas flowing in a random potential. By applying the Bogoliubov theory to a disordered Bose system with a steady flow, the condensate density and the superfluid density are determined as functions of the disorder strength, flow velocity, and temperature. The critical velocity, at which the steady flow becomes unstable, is calculated from the spectrum of hydrodynamic excitation. We also show that in two dimensions the critical velocity strongly depends on the system size.
机译:我们研究了随机潜力流动的弱相互作用的血液气体的稳定性和临界速度。 通过将Bogoliubov理论施加到具有稳定流动的无序培养系统,冷凝物密度和超流体密度被确定为病症强度,流速和温度的功能。 根据流体动力激发的光谱计算稳态流动不稳定的临界速度。 我们还表明,在两个维度中,临界速度强烈取决于系统尺寸。

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