English

Stereodynamics of rotationally inelastic scattering in cold He+HD collisions

Chemical Physics 2020-09-04 v1 Atomic Physics

Abstract

Stereodynamics of cold collisions has become a fertile ground for quantized studies of molecular collisions and control of the collision outcome. A benchmark process for stereodynamic control is rotational transition in He+HD collisions. This process was recently probed experimentally by Perreault et al. by examining quenching from j=2j=2 to j=0j'=0 state in the v=1v=1 vibrational manifold. Here, through explicit quantum scattering calculations on a highly accurate ab initio interaction potential for He+H2_2, we reveal how a combination of two shape resonances arising from l=1l=1 and l=2l=2 partial waves controls the stereodynamic outcome rather than a single l=2l=2 partial wave attributed in the experiment. Further, for collision energies below 0.5 cm1^{-1}, it is shown that stereodynamic preference for integral cross section follows a simple universal trend.

Keywords

Cite

@article{arxiv.2007.13900,
  title  = {Stereodynamics of rotationally inelastic scattering in cold He+HD collisions},
  author = {Masato Morita and Naduvalath Balakrishnan},
  journal= {arXiv preprint arXiv:2007.13900},
  year   = {2020}
}

Comments

6 pages, 4 figures and 35 references and Supplementary Material (10 pages, 8 figures)