论文标题

通过复合形成了解极地分子的量子退化气体中的化学反应

Understanding chemical reactions in a quantum degenerate gas of polar molecules via complex formation

论文作者

He, Peiru, Bilitewski, Thomas, Greene, Chris H., Rey, Ana Maria

论文摘要

最近的一个实验首次报道了极地分子的费米退化气体的制备,并观察到其化学反应速率与纯粹经典治疗的预期相比抑制了其化学反应速率。虽然假设超速型制度的抑制在分子的费米统计中具有根源,但该论点与费米压力应为化学反应速率树立下限的事实不一致。因此,不能从标准的两体$ p $ - 波弹碰撞中解释。在这里,我们开发了一种通过分子复合物的形成和腐烂发生的化学反应模型。我们确实发现纯粹的两体分子损失无法解释观察到的抑制。取而代之的是,我们通过包括有效的复合物分子相互作用,从有限密度的多体和有效的培养基效应中出现,并在存在诱捕光的情况下扩展了描述。 %在此框架下,我们观察到表现为净三体分子相互作用的其他复杂分子碰撞可能会导致其他抑制作用。尽管我们的有效模型能够定量地重现最近的实验观察结果,但对负责这些高阶交互过程的实际物理机制的详细理解仍在待发。

A recent experiment reported for the first time the preparation of a Fermi degenerate gas of polar molecules and observed a suppression of their chemical reaction rate compared to the one expected from a purely classical treatment. While it was hypothesized that the suppression in the ultracold regime had its roots in the Fermi statistics of the molecules, this argument is inconsistent with the fact that the Fermi pressure should set a lower bound for the chemical reaction rate. Therefore it can not be explained from standard two-body $p$-wave inelastic collisions. Here we develop a simple model of chemical reactions that occur via the formation and decay of molecular complexes. We indeed find that pure two-body molecule losses are unable to explain the observed suppression. Instead we extend our description beyond two-body physics by including effective complex-molecule interactions possible emerging from many-body and effective medium effects at finite densities and in the presence of trapping light. %Under this framework we observe that additional complex-molecule collisions, which manifest as a net three-body molecular interaction could give rise to the additional suppression. Although our effective model is able to quantitatively reproduce recent experimental observations, a detailed understanding of the actual physical mechanism responsible for these higher-order interaction processes is still pending.

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