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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Landau damping: Instability mechanism of superfluid Bose gases moving in optical lattices
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Landau damping: Instability mechanism of superfluid Bose gases moving in optical lattices

机译:Landau阻尼:超流体玻色气体在晶格中移动的不稳定性机理

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We investigate Landau damping of Bogoliubov excitations in a dilute Bose gas moving in an optical lattice at finite temperatures. Using a one-dimensional tight-binding model, we explicitly obtain the Landau damping rate, the sign of which determines the stability of the condensate. We find that the sign changes at a certain condensate velocity, which is exactly the same as the critical velocity determined by the Landau criterion of superfluidity. This coincidence of the critical velocities reveals the microscopic mechanism of the Landau instability. This instability mechanism shows that a thermal cloud plays a crucial role in the breakdown of superfluids, since the thermal cloud is a vital source of Landau damping. We also examine the possibility of simultaneous disappearance of all damping processes.
机译:我们研究了在有限温度下在光学晶格中移动的稀疏Bose气体中Bogoliubov激发的Landau阻尼。使用一维紧束缚模型,我们明确获得了Landau阻尼率,其符号决定了冷凝物的稳定性。我们发现符号在一定的凝结速度下发生变化,这与超流动的Landau准则确定的临界速度完全相同。临界速度的这种一致性揭示了朗道不稳定性的微观机制。这种不稳定性机制表明,热云在超流体的分解中起着至关重要的作用,因为热云是Landau阻尼的重要来源。我们还研究了所有阻尼过程同时消失的可能性。

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