Hyperspherical approach to atom--dimer collision with the Jacobi boundary condition
Atomic Physics
2022-10-19 v2 Quantum Gases
Abstract
In this study, we investigate atom--dimer scattering within the framework of the hyperspherical method. The coupled channel Schr\"odinger equation is solved using the R-matrix propagation technique combined with the smooth variable discretization method. In the matching procedure, the asymptotic wave functions are expressed in the rotated Jacobi coordinates. We apply this approach to the elastic scattering He(T) + He and H + HLi processes. The convergence of the scattering length as a function of the propagation distance is studied. We find that the method is reliable and can provide considerable savings over previous propagators.
Cite
@article{arxiv.2202.08528,
title = {Hyperspherical approach to atom--dimer collision with the Jacobi boundary condition},
author = {Cai-Yun Zhao and Yi Zhang and Hui-Li Han and Ting-Yun Shi},
journal= {arXiv preprint arXiv:2202.08528},
year = {2022}
}