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Transport of an interacting Bose gas in 1D disordered lattices

机译:在1D无序的格子中运输相互作用的瓶装气体

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We use ultracold atoms in a quasiperiodic lattice to study two outstanding problems in the physics of disordered systems:a) the anomalous diffusion of a wavepacket in the presence of disorder, interactions and noise; b) the transport of a disordered superfluid. a) Our results show that the subdiffusion, observed when interaction alone is present, can be modelled with a nonlinear diffusion equation and the peculiar shape of the expanding density profiles can be connected to the microscopic nonlinear diffusion coefficients. Also when noise alone is present we can describe the observed normal diffusion dynamics by existing microscopic models. In the unexplored regime in which noise and interaction are combined, instead, we observe an anomalous diffusion, that we model with a generalized diffusion equation, where noise- and interaction-induced contributions add each other. b) We find that an instability appearing at relatively large momenta can be employed to locate the fluid-insulator crossover driven by disorder. By investigating the momentum-dependent transport, we observe a sharp crossover from a weakly dissipative regime to a strongly unstable one at a disorder-dependent critical momentum. The set of critical disorder and interaction strengths for which such critical momentum vanishes, can be identified with the separation between a fluid regime and an insulating one and can be related to the predicted zero-temperature superfluid-Bose glass transition.
机译:我们在QuaSipheriodic格中使用Ultracold原子来研究无序系统的物理学中的两个突出问题:a)波皮皮在病症存在,相互作用和噪声存在下的异常扩散; b)传输无序的超流体。 a)我们的结果表明,当存在单独的相互作用时观察到的芯片区,可以用非线性扩散方程式建模,并且扩展密度分布的特殊形状可以连接到微观非线性扩散系数。此外,当仅存在噪声时,我们可以通过现有的微观模型来描述观察到的正常扩散动态。在噪声和交互组合的未探究的制度中,我们观察到一种异常的扩散,我们使用广义扩散方程模型,其中噪声和交互诱导的贡献相互添加。 b)我们发现,在相对较大的动量下出现的不稳定性可以用于定位由紊乱驱动的流体绝缘体交叉。通过调查依赖势头的运输,我们观察到弱耗散制度的尖锐交叉,在依赖于紊乱的关键势头中强烈地不稳定。可以通过流体制度和绝缘体之间的分离来鉴定这种关键动量消失的临界障碍和相互作用强度,并且可以与预测的零温度超流体玻璃化转变有关。

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