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Expanding ring-shaped Bose-Einstein condensates as analogs of cosmological models: Analytical characterization of the inflationary dynamics

机译:扩展环形Bose-Einstein凝聚物作为宇宙学模型的类似物:通胀动态的分析表征

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摘要

We analytically study the expansion of a Bose-Einstein condensate in a ring-shaped trap with an increasing central radius. The evolution of the ground state is described using a scaling transform. Additionally, the dynamics of excited azimuthal modes over the varying ground state is analyzed through a generalization of the Bogoliubov-de Gennes approach. Our results explain some of the features observed in recent experiments focused on testing the applicability of the system as a parallel of cosmological inflationary models. The radial dynamics, which corresponds to the inflaton field of the cosmological counterpart, is analytically characterized: The expansion is found to induce the oscillatory displacement of the condensate as well as the coupled variation of the radial and vertical widths. Our findings account also for the observed redshift and emergence of the Hubble friction in the evolution of initially prepared azimuthal modes. Our description, which traces the role of the different components of the setup in the expansion, enhances the controllability and therefore the potential of the system as a ground for emulating the inflationary dynamics of cosmological models.
机译:我们分析地研究了在环形捕集器中的膨胀 - 爱因斯坦冷凝物的膨胀,中央半径增加。使用缩放变换描述地状态的演变。另外,通过Bogoliubov-de Gennes方法的概括地分析了不同地位上的激发方位角模式的动态。我们的结果解释了最近实验中观察到的一些特征,重点是测试系统的适用性作为宇宙通胀模型的平行。对应于宇宙物理对应物的发射场的径向动力学进行了分析表征:发现扩展诱导冷凝物的振荡位移以及径向和垂直宽度的耦合变化。我们的调查结果占据了初步制备的方位形模式的演变中观察到的红移和哈勃摩擦的出现。我们的描述,其追溯了设置在扩展中的不同组件的作用,增强了可控性,从而提高了系统的电位作为模拟宇宙学模型的通胀动态的地面。

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