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Diffusive and arrested transport of atoms under tailored disorder

机译:在有序的无序状态下原子的扩散性和阻滞性运输

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摘要

Ultracold atoms in optical lattices offer a unique platform for investigating disorder-driven phenomena. While static disordered site potentials have been explored in a number of experiments, a more general, dynamical control over site-energy and off-diagonal tunnelling disorder has been lacking. The use of atomic quantum states as synthetic dimensions has introduced the spectroscopic, site-resolved control necessary to engineer more tailored realisations of disorder. Here, we present explorations of dynamical and tunneling disorder in an atomic system by controlling laser-driven dynamics of atomic population in a momentum-space lattice. By applying static tunnelling phase disorder to a one-dimensional lattice, we observe ballistic quantum spreading. When the applied disorder fluctuates on time scales comparable to intersite tunnelling, we instead observe diffusive atomic transport, signalling a crossover from quantum to classical expansion dynamics. We compare these observations to the case of static site-energy disorder, where we directly observe quantum localisation.
机译:光学晶格中的超冷原子为研究无序驱动现象提供了独特的平台。尽管在许多实验中已经探究了静态无序位势,但仍缺乏对位能和非对角线隧道效应的更一般的动态控制。原子量子态作为合成尺度的使用引入了光谱学上的,位点分辨的控制,这些控制是设计更特制的无序实现所必需的。在这里,我们通过控制动量空间晶格中激光驱动的原子团簇动力学,介绍了原子体系中的动力学和隧穿无序现象。通过将静态隧道相位无序应用于一维晶格,我们观察到弹道量子扩散。当所施加的紊乱在可与站点间隧穿相比的时间尺度上波动时,我们改为观察原子扩散,这标志着从量子到经典膨胀动力学的交叉。我们将这些观察结果与静态位能紊乱的情况进行比较,在这种情况下,我们直接观察到了量子定位。

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