首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Self-interfering matter-wave patterns generated by a moving laser obstacle in a two-dimensional Bose-Einstein condensate inside a power trap cut off by box potential boundaries
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Self-interfering matter-wave patterns generated by a moving laser obstacle in a two-dimensional Bose-Einstein condensate inside a power trap cut off by box potential boundaries

机译:由移动势垒在二维陷阱玻色-爱因斯坦凝聚物中的自干涉物质波模式产生的自陷,该势阱被箱形电势边界切断

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摘要

We report the observation of highly energetic self-interfering matter-wave (SIMW) patterns generated by a moving obstacle in a two-dimensional Bose-Einstein condensate (BEC) inside a power trap cut off by hard-wall box potential boundaries. The obstacle initially excites circular dispersive waves radiating away from the center of the trap which are reflected from hard-wall box boundaries at the edges of the trap. The resulting interference between outgoing waves from the center of the trap and reflected waves from the box boundaries institutes, to the best of our knowledge, unprecedented SIMW patterns. For this purpose we simulated the time-dependent Gross-Pitaevskii equation using the split-step Crank-Nicolson method and the obstaclewas modelled by a moving impenetrable Gaussian potential barrier. Various trapping geometries are considered in which the dynamics of the spatial and momentum density, as well as the energy, are considered. The momentum dynamics reveal an oscillatory behavior for the condensate fraction, indicative of excitations out of and de-excitations back into the condensate state. An oscillatory pattern for the energy dynamics reveals the presence of solitons in the system. Some vortex features are also obtained.
机译:我们报告观察到的高能自干扰物质波(SIMW)模式是由移动壁垒中的二维障碍物形成的,该运动障碍物是由硬壁箱体电势边界切断的陷井内的二维Bose-Einstein冷凝水(BEC)。障碍物最初激发从陷阱的中心散发出来的圆形色散波,这些圆形色散波从陷阱边缘处的硬壁箱边界反射回来。据我们所知,前所未有的SIMW模式会导致陷阱中心的出射波与盒子边界机构的反射波之间产生干扰。为此,我们使用分步Crank-Nicolson方法模拟了与时间相关的Gross-Pitaevskii方程,并通过不可穿透的高斯势垒建模了障碍。考虑了各种俘获几何形状,其中考虑了空间和动量密度以及能量的动力学。动量动力学揭示了凝结水馏分的振荡行为,指示了从凝结水状态中激发出来的激磁和反激化回凝结水状态。能量动力学的振荡模式揭示了系统中孤子的存在。还获得了一些涡旋特征。

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