论文标题

冷原子 - 二聚体反应率,$^4 $ He,$^{6,7} $ li和$^{23} $ na

Cold atom-dimer reaction rates with $^4$He, $^{6,7}$Li and $^{23}$Na

论文作者

Shalchi, Mahdi A., Yamashita, Marcelo T., Frederico, Tobias, Tomio, Lauro

论文摘要

预计两个$^4 $ he原子的不同组合将预测原子二聚体交换和解离反应速率,以及$^{6} $ li,$^{7} $ li和$^{23} $ na之间的一种碱性物种,通过使用三体散射和短距离两体互动。我们的研究与低能反应率有关,其中$ s- $,$ p-$和$ d $ wave贡献是相关的。鉴于以前的可用调查和实验室可访问性,他被选为二进制混合物中的原子之一。专注于具有两种原子混合物的可能的实验性冷原子实现,可以提取有关原子二聚体反应速率的信息,我们预测,小于20 mk的碰撞反应速率的降低是小于20 mk的弹性反应速率,当二聚体是二聚体为$^4 $ HE HE HE $^{23} $ na Molecule。我们还预计,$^4 $ he + $^4 $ he $^7 $ li和$^4 $ he + $^4 $ he + $^he $^{23} $ na反应过程的弹性$ p-$ wave的贡献为零。随着弱结合的分子与原子在非常低的碰撞能量下反应,我们根据Efimov物理学的光,解释了我们的结果,这些物理学支持模型的独立性和预测的鲁棒性。证明了对有效范围的特定敏感性,这是由$ p-$和$ d $ waves在原子交易所和解离过程中的特殊反演作用强调的。

Atom-dimer exchange and dissociation reaction rates are predicted for different combinations of two $^4$He atoms and one of the alkaline species among $^{6}$Li, $^{7}$Li and $^{23}$Na, by using three-body scattering formalism with short-range two-body interactions. Our study was concerned with low-energy reaction rates in which the $s-$, $p-$ and $d-$ wave contributions are the relevant ones. The $^4$He is chosen as one of the atoms in the binary mixture, in view of previous available investigations and laboratory accessibilities. Focusing on possible experimental cold-atom realizations with two-atomic mixtures, in which information on atom-dimer reaction rates can be extracted, we predict the occurrence of a dip in the elastic reaction rate for colliding energies smaller than 20 mK, when the dimer is the $^4$He$^{23}$Na molecule. We are also anticipating a zero in the elastic $p-$wave contribution for the $^4$He + $^4$He$^7$Li and $^4$He + $^4$He$^{23}$Na reaction processes. With weakly-bound molecules reacting with atoms at very low colliding energies, we interpret our results on the light of Efimov physics which supports model independence and robustness of our predictions. Specific sensitivities on the effective range were evidenced, highlighted by the particular inversion role of the $p-$ and $d-$waves in the atom exchange and dissociation processes.

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