Predissociation of the A2Σ+ (v′ = 3) state of the OH radical
Abstract
Predissociation of electronically excited OHA2Σ+ (v′ = 3) is studied using velocity-map imaging of the atomic oxygen photofragments. Fine structure yields, angular distributions and alignment parameters are obtained for the O(3PJ), J = 2,1,0 products. Angular distributions for the O3P0 (J = 0) fragment, which has no angular momentum polarization, agree well with predictions from the angular distribution simulation computer routine by Kim et al. [J. Chem. Phys., 2006, 125, 133316] which calculates the anisotropy of photofragment recoil as a function of dissociation lifetime, excitation frequency, rotational level, and rotational constant. When angular momentum polarization (i.e. non-equilibrium population distributions of the magnetic sublevels) of the atomic fragments is present, the polarization sensitivity of the O(3PJ) (2 + 1) resonance enhanced multiphoton ionization (
- This article is part of the themed collection: Electronic structures and reaction dynamics of open-shell species