García-Vela A
Instituto de Física Fundamental , Consejo Superior de Investigaciones Científicas , Serrano 123 , 28006 Madrid , Spain . Email:
Chem Sci. 2017 Jul 1;8(7):4804-4810. doi: 10.1039/c7sc00452d. Epub 2017 Apr 6.
The existence of a structure in a resonance state is systematically investigated. A resonance structure is defined as the energy dependence across the resonance width of the fragment state distributions produced upon resonance decay. Different types of resonances, both isolated and overlapping ones, have been explored for this purpose. It is found that isolated resonances do not present an appreciable energy dependence on the product state distributions. On the contrary, overlapping resonances exhibit a clear structure regarding the fragment distributions, which becomes increasingly more pronounced as the intensity of the overlap between the resonances increases. Such an energy dependence of the product distributions arises from the quantum interference between the amplitudes of the overlapping resonances, as demonstrated formally here by the equations derived from the condition of resonance overlap. The application of the present effect to the control of the fragment state distributions produced in a wide variety of molecular processes governed by resonance states is envisioned.
系统地研究了处于共振态的结构的存在情况。共振结构被定义为共振衰变时产生的碎片态分布在共振宽度上的能量依赖性。为此,已经探索了不同类型的共振,包括孤立共振和重叠共振。发现孤立共振对产物态分布没有明显的能量依赖性。相反,重叠共振在碎片分布方面呈现出清晰的结构,随着共振之间重叠强度的增加,这种结构变得越来越明显。产物分布的这种能量依赖性源于重叠共振振幅之间的量子干涉,这里通过从共振重叠条件导出的方程形式上证明了这一点。设想了将当前效应应用于控制由共振态主导的各种分子过程中产生的碎片态分布。