Quantal Effects on Spinodal Instabilities in Charge Asymmetric Nuclear Matter
Nuclear Theory
2008-11-26 v1
Abstract
Quantal effects on growth of spinodal instabilities in charge asymmetric nuclear matter are investigated in the framework of a stochastic mean field approach. Due to quantal effects, in both symmetric and asymmetric matter, dominant unstable modes shift towards longer wavelengths and modes with wave numbers larger than the Fermi momentum are strongly suppressed. As a result of quantum statistical effects, in particular at lower temperatures, magnitude of density fluctuations grows larger than those calculated in semi-classical approximation.
Keywords
Cite
@article{arxiv.0808.0083,
title = {Quantal Effects on Spinodal Instabilities in Charge Asymmetric Nuclear Matter},
author = {S. Ayik and N. Er and O. Yilmaz and A. Gokalp},
journal= {arXiv preprint arXiv:0808.0083},
year = {2008}
}
Comments
19 pages, 7 figures submitted to Nucl. Phys. A