论文标题

超速反应性分子的通用关系

Universal relations for ultracold reactive molecules

论文作者

He, Mingyuan, Lv, Chenwei, Lin, Hai-Qing, Zhou, Qi

论文摘要

实验室中超低极性分子的实现将物理和化学都推向了新领域。特别是,这些极性分子为科学家提供了前所未有的机会,可以探索量子效应的超低政权中的化学反应。但是,关于两体损失如何取决于相互作用的多体系统中量子相关性的关键问题仍然是开放的。在这里,我们提出了许多普遍关系,这些关系将两体损失与其他物理可观察物(包括动量分布和密度相关函数)直接连接起来。这些关系对于任意显微镜参数有效,例如粒子数,温度和相互作用强度,展现了接触的关键作用,接触的关键作用,稀释量子系统的基本数量在确定许多体体环境中量子反应分子的反应速率中。我们的工作打开了一个未开发的区域,使量子化学,原子,分子和光学物理以及凝结物理物理学打开了大门。

The realization of ultracold polar molecules in laboratories has pushed both physics and chemistry to new realms. In particular, these polar molecules offer scientists unprecedented opportunities to explore chemical reactions in the ultracold regime where quantum effects become profound. However, a key question about how two-body losses depend on quantum correlations in an interacting many-body system remains open so far. Here, we present a number of universal relations that directly connect two-body losses to other physical observables, including the momentum distribution and density correlation functions. These relations, which are valid for arbitrary microscopic parameters, such as the particle number, the temperature, and the interaction strength, unfold the critical role of contacts, a fundamental quantity of dilute quantum systems in determining the reaction rate of quantum reactive molecules in a many-body environment. Our work opens the door to an unexplored area intertwining quantum chemistry, atomic, molecular and optical physics, and condensed matter physics.

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