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DIFFERENT SCATTERING REGIMES IN TWO-DIMENSIONAL BOSE-EINSTEIN CONDENSATES

机译:二维玻色-爱因斯坦凝聚物中的不同散射方式

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摘要

Motivated by the recent efforts to produce low-dimensional copdensates, we study the ground-state density profiles of two-dimensional Bose-Einstein condensed atoms at zero temperature within a mean-field theory. The interplay between the tight harmonic confinement in the axial direction and collisional properties of the condensate atoms help identify three distinct regimes of experimental interest. Each regime is described by a different atom-atom coupling which depends on the density of the condensate as the system starts to be influenced by two-dimensional collisions. We trace the regions of experimentally accessible system parameters for which the crossover between different dimensionality behaviors in the scattering properties may become observable.
机译:受近期生产低维共聚体努力的推动,我们在均值理论中研究了二维玻色-爱因斯坦凝聚原子在零温度下的基态密度分布。轴向上的严格谐波限制与冷凝原子的碰撞特性之间的相互作用有助于确定实验兴趣的三个不同机制。每种状态均由不同的原子-原子耦合描述,该耦合取决于系统开始受到二维碰撞影响时​​的冷凝液密度。我们跟踪的实验可访问系统参数的区域,在散射属性中不同维数行为之间的交叉可能变得可见。

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