Margulis Baruch, Narevicius Julia, Narevicius Edvardas
Department of Chemical and Biological Physics, Weizmann Institute of Science, Rehovot, Israel.
Nat Commun. 2020 Jul 16;11(1):3553. doi: 10.1038/s41467-020-17393-0.
Observation of molecular dynamics with quantum state resolution is one of the major challenges in chemical physics. Complete characterization of collision dynamics leads to the microscopic understanding and unraveling of different quantum phenomena such as scattering resonances. Here we present an experimental approach for observing molecular dynamics involving neutral particles and ions that is capable of providing state-to-state mapping of the dynamics. We use Penning ionization reaction between argon and metastable helium to generate argon ion and ground state helium atom pairs at separation of several angstroms. The energy of an ejected electron carries the information about the initial electronic state of an ion. The coincidence detection of ionic products provides a state resolved description of the post-ionization ion-neutral dynamics. We demonstrate that correlation between the electron and ion energy spectra enables us to directly observe the spin-orbit excited Feshbach resonance state of HeAr. We measure the lifetime of the quasi-bound HeAr A state and discuss possible applications of our method.
以量子态分辨率观测分子动力学是化学物理中的主要挑战之一。碰撞动力学的完整表征有助于从微观层面理解和揭示诸如散射共振等不同的量子现象。在此,我们提出一种用于观测涉及中性粒子和离子的分子动力学的实验方法,该方法能够提供动力学的态对态映射。我们利用氩气与亚稳态氦之间的潘宁电离反应,在数埃的间距下产生氩离子和基态氦原子对。射出电子的能量携带有关离子初始电子态的信息。离子产物的符合探测提供了电离后离子 - 中性动力学的态分辨描述。我们证明电子和离子能谱之间的相关性使我们能够直接观测到HeAr的自旋 - 轨道激发费什巴赫共振态。我们测量了准束缚HeAr A态的寿命,并讨论了我们方法的可能应用。