Determination of the scattering length for Rb-Cs X$^{1}\Sigma ^{+}$ ground electronic state using a variational method
Abstract
We performed the calculation of the scattering length for the elastic collision between the rubidium and cesium atoms. For this we applied a variational procedure based on the R-matrix theory for unbound states employing the finite element method (FEM) for expansion of the wave-function in terms of a finite set of local basis functions. The FEM presents as advantages the possibility of the development of a efficient matrix inversion algorithm which significantly reduces the computation time to calculate the R matrix. We also tested a potential energy curve with spectroscopic accuracy obtained before from a direct adjustment procedure of experimental data of the state based on genetic algorithm. The quality of our result was evaluated by comparing them with several ones previously published at literature.
Keywords
Cite
@article{arxiv.1703.03486,
title = {Determination of the scattering length for Rb-Cs X$^{1}\Sigma ^{+}$ ground electronic state using a variational method},
author = {M. N. Guimarães and F. V. Prudente},
journal= {arXiv preprint arXiv:1703.03486},
year = {2023}
}
Comments
15 pages, 6 tables and 2 figures