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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Influence of quantum fluctuations on the superfluid critical velocity of a one-dimensional Bose gas
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Influence of quantum fluctuations on the superfluid critical velocity of a one-dimensional Bose gas

机译:量子波动对一维Bose气体超流临界速度的影响

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The mean-field Gross-Pitaevskii equation with repulsive interactions exhibits frictionless flow when stirred by an obstacle below a critical velocity. Here we go beyond the mean-field approximation to examine the influence of quantum fluctuations on this threshold behaviour in a one-dimensional Bose gas in a ring. Using the truncated Wigner approximation, we perform simulations of ensembles of trajectories where the Bose gas is stirred with a repulsive obstacle below the mean-field critical velocity. We observe the probabilistic formation of grey solitons which subsequently decay, leading to an increase in the momentum of the fluid. The formation of the first soliton leads to a soliton cascade, such that the fluid rapidly accelerates to minimise the speed difference with the obstacle. We measure the initial rate of momentum transfer, and relate it to macroscopic tunnelling between quantised flow states in the ring.
机译:当在低于临界速度的障碍物时搅拌时,具有排斥相互作用的平均场的总体公平方程表现出摩擦流动。 在这里,我们超出了平均场近似,以检查量子波动对环中的一维Bose气体中的这种阈值行为的影响。 使用截短的WIGNER近似,我们执行轨迹的集合,其中搅拌瓶子气体与低于平均临界速度的排斥障碍物。 我们观察到随后腐烂的灰色孤子的概率形成,导致流体的势头增加。 第一孤子的形成导致孤子级联,使得流体快速加速以最小化与障碍物的速度差。 我们测量初始动量转移率,并将其与环中量化的流量状态之间的宏观隧道相关联。

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