Quantum Algebraic Symmetries in Nuclei and Molecules
Nuclear Theory
2008-02-03 v1 chem-ph
Quantum Algebra
q-alg
Abstract
Various applications of quantum algebraic techniques in nuclear and molecular physics are briefly reviewed. Emphasis is put in the study of the symmetries of the anisotropic quantum harmonic oscillator with rational ratios of frequencies, which underly the structure of superdeformed and hyperdeformed nuclei, the Bloch--Brink -cluster model and possibly the shell structure in deformed atomic clusters.
Cite
@article{arxiv.nucl-th/9510042,
title = {Quantum Algebraic Symmetries in Nuclei and Molecules},
author = {Dennis Bonatsos and C. Daskaloyannis and P. Kolokotronis and D. Lenis},
journal= {arXiv preprint arXiv:nucl-th/9510042},
year = {2008}
}
Comments
LaTeX, 8 pages; Invited lecture at the VIIth International Conference on Symmetry Methods in Physics (Dubna, 10-16 July 1995)