Alternative Fourier Expansions for Inverse Square Law Forces
Atomic Physics
2013-05-29 v2 General Physics
Abstract
Few-body problems involving Coulomb or gravitational interactions between pairs of particles, whether in classical or quantum physics, are generally handled through a standard multipole expansion of the two-body potentials. We discuss an alternative based on a compact, cylindrical Green's function expansion that should have wide applicability throughout physics. Two-electron "direct" and "exchange" integrals in many-electron quantum systems are evaluated to illustrate the procedure which is more compact than the standard one using Wigner coefficients and Slater integrals.
Keywords
Cite
@article{arxiv.physics/0101086,
title = {Alternative Fourier Expansions for Inverse Square Law Forces},
author = {Howard S. Cohl and A. R. P. Rau and Joel E. Tohline and Dana A. Browne and John E. Cazes and Eric I. Barnes},
journal= {arXiv preprint arXiv:physics/0101086},
year = {2013}
}
Comments
10 pages, latex/Revtex4, 1 figures