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Localized-interaction-induced quantum reflection and filtering of bosonic matter in a one-dimensional lattice guide

机译:一维晶格向导中局域相互作用诱导的玻色子量子反射与滤波

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Download video Transcript View all New J. Phys. video abstracts We study the dynamics of quantum bosonic waves in a one-dimensional tilted optical lattice. An effective spatially localized nonlinear two-body potential barrier is set at the center of the lattice. This version of the Bose–Hubbard model can be realized in atomic Bose–Einstein condensates, with the help of localized optical Feshbach resonance, controlled by a focused laser beam, and in quantum optics, using an arrayed waveguide with selectively doped guiding cores. Our numerical analysis demonstrates that the central barrier induces anomalous quantum reflection of incident wave packets, which acts solely on bosonic components with multiple onsite occupancies, while single-occupancy components pass the barrier, allowing one to distill them in the interaction zone. As a consequence, in this region one finds a hard-core-like state, in which the multiple occupancy is forbidden. Our results demonstrate that this regime can be attained dynamically, using relatively weak interactions, irrespective of their sign. Physical parameters necessary for the experimental implementation of the setting in ultracold atomic gases are estimated.
机译:下载视频抄本查看全部New J. Phys。视频摘要我们研究了一维倾斜光学晶格中的量子玻声波的动力学。有效的空间局部非线性两体势垒设置在晶格的中心。这种Bose-Hubbard模型的版本可以在局部Bose-Einstein凝聚物中通过聚焦激光束控制的局部Feshbach共振实现,也可以在量子光学中使用带有选择性掺杂的导向纤芯的阵列波导来实现。我们的数值分析表明,中心屏障引起入射波包的异常量子反射,该量子波反射仅对具有多个现场占用的玻色子成分起作用,而单个占用成分通过该屏障,使人们可以将它们蒸馏到相互作用区域中。结果,在这一区域中,人们发现了一种类似铁杆的状态,在这种状态下禁止多次入住。我们的结果表明,可以使用相对弱的交互作用来动态实现此机制,而无需考虑其符号。估算了在超冷原子气体中实验设置所需的物理参数。

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