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Signatures of universal four-body phenomena and their relation to the Efimov effect

机译:普遍四体现象的特征及其与Efimov效应的关系

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The problem of three interacting quantal bodies, in its various guises, seems deceptively simple, but it has also provided striking surprises, such as the Efimov effect(1,2), which was confirmed experimentally(3) only more than 35 years after its initial prediction. The importance of understanding the three-body problem was magnified by the explosion of ultracold science following the formation of Bose-Einstein condensates in 1995 (ref. 4). For ultracold gases, three-body recombination (where B + B + B collide to form B-2 + B) was quickly recognized as the main loss process and connected(5-8) with the Efimov effect in the 'universal' realm of very large atom-atom scattering lengths a. The problem of four interacting bodies challenges theory far more than the three-body quantal problem. Some key insights have been achieved in recent years(9-16). Here, we present a major extension of our understanding of the four-body problem in the universal large-a regime. Our results support a previous conjecture(10) that two resonantly bound four-body states are attached to every universal three-body Efimov resonance and they improve the calculated accuracy of their universal properties. A hitherto unanalysed feature found in ultracold-gas experiments(3) supports this universal prediction, and it provides the first evidence of four-body recombination (where B + B + B + B form B-3 + B, B-2 + B + B or B-2 + B-2).
机译:各种形式的三个相互作用的量子体的问题看似简单,但它也提供了惊人的惊喜,例如Efimov效应(1,2),该效应仅在其35年后被实验证实(3)。初步预测。 1995年Bose-Einstein冷凝物形成后,超冷科学的迅猛发展,加深了理解三体问题的重要性(参考文献4)。对于超冷气体,三体重组(其中B + B + B碰撞形成B-2 + B)很快被认为是主要的损失过程,并与(5-8)的Efimov效应联系在一起。很大的原子-原子散射长度a。四个相互作用的物体的问题对理论的挑战远远超过了三物体的数量问题。近年来已经取得了一些关键的见解(9-16)。在这里,我们提出了对普遍的大a制政权中的四体问题的理解的主要扩展。我们的结果支持先前的猜想(10),每个共振三体Efimov共振都具有两个共振键合的四体态,它们提高了其通用性的计算精度。超冷气体实验中迄今尚未分析的特征(3)支持这一普遍性预测,它提供了四体重组的第一个证据(其中B + B + B + B形成B-3 + B,B-2 + B + B或B-2 + B-2)。

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