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Effective-field-theory analysis of Efimov physics in heteronuclear mixtures of ultracold atomic gases

机译:超大原子气相核混合物中EFIMOV物理的有效现场理论分析

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We use an effective-field-theory framework to analyze the Efimov effect in heteronuclear three-body systems consisting of two species of atoms with a large interspecies scattering length. In the leading-order description of this theory, various three-body observables in heteronuclear mixtures can be universally parametrized by one three-body parameter. We present the next-to-leading corrections, which include the effects of the finite interspecies effective range and the finite intraspecies scattering length, to various three-body observables. We show that only one additional three-body parameter is required to render the theory predictive at this order. By including the effective range and intraspecies scattering length corrections, we derive a set of universal relations that connect the different Efimov features near the interspecies Feshbach resonance. Furthermore, we show that these relations can be interpreted in terms of the running of the three-body counterterms that naturally emerge from proper renormalization. Finally, we make predictions for recombination observables of a number of atomic systems that are of experimental interest.
机译:我们使用有效的现场理论框架来分析由两种具有大型散射长度的原子的异核三体系中的Efimov效应。在该理论的领先顺序描述中,异核混合物中的各种三体可观察可通过一个三体参数普遍参加。我们介绍了下一端校正,包括有效范围的有效范围和有限内部散射长度的有效范围的效果,以及各种三体可观察。我们表明,只需要一个额外的三体参数来呈现这个理论预测。通过包括有效范围和散射长度校正,我们推出了一组普遍关系,即连接不同的EFIMov特征附近的Feshbach谐振。此外,我们表明,这些关系可以在自然出现到适当的重整化的三体逆转的运行方面解释。最后,我们对一些实验兴趣的原子系统的重组可观察结果进行预测。

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