论文标题
通过虚拟和共振状态的吡咯分子远处的耦合
Coupling of distant parts of pyrrole molecule through virtual and resonant states
论文作者
论文摘要
我们通过实验表明,在谐振电子附着后,吡咯分子中的N-H键裂解允许并通过未分离的原子的运动(即碳辅助氢原子)的运动来控制。为了解释这些发现,我们开发了一种基于全电子R-Matrix散射计算的复杂平面中电子分子系统的所有共振和虚拟状态的方法。将它们映射为分子几何形状的函数,使我们能够分离两个促成分离机制:$π^*$共振形成诱导强弯曲变形和一种源于虚拟状态的非谐振$σ^*$机制。两种机制之间的耦合是通过C-H键的平面运动来实现的,我们表明它必须发生在超快的几个FS时间尺度上。
We experimentally show that the N-H bond cleavage in pyrrole molecule following resonant electron attachment is allowed and controlled by the motion of the atoms which are not dissociating, namely of the carbon-attached hydrogen atoms. In order to interpret these findings, we have developed a method for locating all resonant and virtual states of an electron-molecule system in the complex plane, based on all-electron R-matrix scattering calculations. Mapping these as a function of molecular geometry allows us to separate two contributing dissociation mechanisms: a $π^*$ resonance formation inducing strong bending deformations and a non-resonant $σ^*$ mechanism originating in a virtual state. The coupling between the two mechanisms is enabled by the out-of-plane motion of the C-H bonds and we show it must happen on an ultrafast few-fs timescale.