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Localization of collisionally inhomogeneous condensates in a bichromatic optical lattice

机译:双色光学晶格中碰撞不均匀凝结的局部化

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By direct numerical simulation and variational solution of the Gross-Pitaevskii equation, we studied the stationary and dynamic characteristics of a cigar-shaped, localized, collisionally inhomogeneous Bose-Einstein condensate trapped in a one-dimensional bichromatic quasiperiodic optical-lattice potential, as used in a recent experiment on the localization of a Bose-Einstein condensate [Roati et al., Nature (London) 453, 895 (2008)]. The effective potential characterizing the spatially modulated nonlinearity is obtained. It is found that the collisional inhomogeneity has influence not only on the central region but also on the tail of the Bose-Einstein condensate. The influence depends on the sign and value of the spatially modulated nonlinearity coefficient. We also demonstrate the stability of the stationary localized state by performing a standard linear stability analysis. Where possible, the numerical results are shown to be in good agreement with the variational results.
机译:通过直接数值模拟和Gross-Pitaevskii方程的变分解,我们研究了雪茄形,局域性,碰撞不均匀的玻色-爱因斯坦凝聚物的静态和动态特性,该凝聚物被捕获在一维双色准周期性光学晶格势中。在最近关于玻色-爱因斯坦冷凝物定位的实验中[Roati et al。,Nature(London)453,895(2008)]。获得表征空间调制非线性的有效电势。发现碰撞不均匀不仅影响中心区域,而且影响玻色-爱因斯坦冷凝物的尾部。影响取决于空间调制非线性系数的符号和值。我们还通过执行标准的线性稳定性分析来证明固定局部状态的稳定性。在可能的情况下,数值结果应显示与变化结果高度吻合。

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