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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Quantum transport in a driven disordered potential: onset of directed current and noise-induced current reversal
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Quantum transport in a driven disordered potential: onset of directed current and noise-induced current reversal

机译:驱动无序势中的量子传输:定向电流和噪声感应电流反转的开始

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We study motion of a quantum wavepacket in a one-dimensional potential with correlated disorder. Presence of long-range potential correlations allows for existence of both localized and extended states. Weak time-dependent perturbation in the form of a fluctuating plane wave is superimposed onto the potential. This model can be realized in experiments with optically trapped cold atoms. Time-dependent perturbation causes transitions between localized and extended states. Owing to violation of space-time symmetries, there arises atomic current which is codirectional with the wave-like perturbation. However, it is shown that the perturbation can drag atoms only within some limited time interval, and then the current changes its direction. Increasing of the perturbation bandwidth and/or amplitude results in decreasing of the time of current reversal. We argue that onset of the current reversal is associated with inhomogeneity of diffusion in the momentum space.
机译:我们研究一维势能与相关疾病的量子波包的运动。远程电位相关性的存在允许存在局部状态和扩展状态。随时间波动的平面波形式的弱于时间的扰动被叠加到电势上。该模型可以在光学捕获的冷原子实验中实现。时间相关的扰动导致局部状态和扩展状态之间的转换。由于违反了时空对称性,产生了与波状扰动同向的原子流。然而,表明扰动只能在有限的时间间隔内拖动原子,然后电流改变其方向。扰动带宽和/或幅度的增加导致电流反向时间的减少。我们认为,当前逆转的发生与动量空间中扩散的不均匀性有关。

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