论文标题
超速基态分子之间碰撞中的Feshbach共振
A Feshbach resonance in collisions between ultracold ground state molecules
论文作者
论文摘要
碰撞共振是一种重要的工具,用于修改超速气体中的相互作用,以实现量子模拟中的新型汉密尔顿人,用于从原子气中创建分子并控制化学反应。到目前为止,已经观察到了原子原子碰撞,原子分子碰撞以及feshbach分子之间碰撞的共振。由于状态的密度可能高和/或谐振复合物的快速衰变,因此已经对超低基态分子存在这种共振存在争议。在这里,我们报告了两个基态NALI分子之间的碰撞中非常明显且狭窄(25 mg)的feshbach共振。该分子叶巴赫共振具有两个特殊特征。首先,由于强大的化学反应性,碰撞损失率高于背景损耗率以上的两个数量级以上,该数量级以上的数量级以上,在$ p $ - 波的通用价值下饱和。其次,共振位于两个开放通道几乎变性的磁场。这意味着中间复合物主要衰减到第二个开放通道。我们使用具有耦合模式的模型来描述与Fabry-Pérot腔类似的耦合模式的谐振损失功能。我们的观察结果证明了即使在没有反应障碍的系统中,长寿相干中间体也存在,并打开了对化学反应一致控制的可能性。
Collisional resonances are an important tool which has been used to modify interactions in ultracold gases, for realizing novel Hamiltonians in quantum simulations, for creating molecules from atomic gases and for controlling chemical reactions. So far, such resonances have been observed for atom-atom collisions, atom-molecule collisions and collisions between Feshbach molecules which are very weakly bound. Whether such resonances exist for ultracold ground state molecules has been debated due to the possibly high density of states and/or rapid decay of the resonant complex. Here we report a very pronounced and narrow (25 mG) Feshbach resonance in collisions between two ground state NaLi molecules. This molecular Feshbach resonance has two special characteristics. First, the collisional loss rate is enhanced by more than two orders of magnitude above the background loss rate which is saturated at the $p$-wave universal value, due to strong chemical reactivity. Second, the resonance is located at a magnetic field where two open channels become nearly degenerate. This implies the intermediate complex predominantly decays to the second open channel. We describe the resonant loss feature using a model with coupled modes which is analogous to a Fabry-Pérot cavity. Our observations prove the existence of long-lived coherent intermediate complexes even in systems without reaction barriers and open up the possibility of coherent control of chemical reactions.