首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Universal few-body physics in resonantly interacting spinor condensates
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Universal few-body physics in resonantly interacting spinor condensates

机译:共振相互作用的自旋缩合物中的通用少数体物理学

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摘要

Optical trapping techniques allow for the formation of bosonic condensates with internal degrees of freedom, so-called spinor condensates. Mean-field models of spinor condensates highlight the sensitivity of the quantum phases of the system to the relative strength of the two-body interaction in the different spin-channels. Such a description captures the regime where these interactions are weak. In the opposite and largely unexplored regime of strongly correlated spinor condensates, three-body interactions can play an important role through the Efimov effect, producing possible novel phases. Here, we study the three-body spinor problem using the hyperspherical adiabatic representation for spin-1, -2 and -3 condensates in the strongly-correlated regime. We characterize the Efimov physics for such systems and the relevant threebody mean-field parameters. We find that the Efimov effect can strongly affect the spin dynamics and three-body mean-field contributions to the possible quantum phases of the condensate through universal contributions to scattering observables.
机译:光学俘获技术允许形成具有内部自由度的波状冷凝物,即所谓的棘状冷凝物。旋子凝聚的平均场模型突出了系统的量子相对不同自旋通道中两体相互作用相对强度的敏感性。这样的描述抓住了这些相互作用薄弱的状态。在强烈相关的棘突冷凝物的相反且基本上未开发的状态中,三体相互作用可通过Efimov效应发挥重要作用,产生可能的新相。在这里,我们使用强关联方案中的spin-1,-2和-3凝结物的超球形绝热表示研究三体Spinor问题。我们表征了此类系统的Efimov物理学和相关的三体平均场参数。我们发现,Efimov效应可以通过对散射可观察物的普遍贡献而强烈影响自旋动力学和三体平均场对冷凝物可能量子相的贡献。

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