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首页> 外文期刊>Annals of Physics >Weak localization with nonlinear bosonic matter waves
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Weak localization with nonlinear bosonic matter waves

机译:非线性玻色子波的弱定位

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摘要

We investigate the coherent propagation of dilute atomic Bose-Einstein condensates through irregularly shaped billiard geometries that are attached to uniform incoming and outgoing waveguides. Using the mean-field description based on the nonlinear Gross-Pitaevskii equation, we develop a diagrammatic theory for the self-consistent stationary scattering state of the interacting condensate, which is combined with the semiclassical representation of the single-particle Green function in terms of chaotic classical trajectories within the billiard. This analytical approach predicts a universal dephasing of weak localization in the presence of a small interaction strength between the atoms, which is found to be in good agreement with the numerically computed reflection and transmission probabilities of the propagating condensate. The numerical simulation of this quasi-stationary scattering process indicates that this interaction-induced dephasing mechanism may give rise to a signature of weak antilocalization, which we attribute to the influence of non-universal short-path contributions.
机译:我们研究稀疏原子的玻色-爱因斯坦凝聚物的相干传播,该凝聚物通过不规则形状的台球几何形状附着在均匀的入射和出射波导上。使用基于非线性Gross-Pitaevskii方程的均值场描述,我们为相互作用的冷凝物的自洽平稳散射态建立了图解理论,并结合了单粒子Green函数的半经典表示形式。台球内的混沌古典轨迹。这种分析方法预测,在原子之间存在小的相互作用强度的情况下,普遍会弱化局域性相移,这被发现与传播的凝析液的数值计算反射率和透射率非常吻合。准平稳散射过程的数值模拟表明,这种相互作用引起的移相机制可能引起弱的反局部化特征,这归因于非普遍的短程贡献。

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