English

Nuclear incompressibility: An analytical study on leptodermous expansion

Nuclear Theory 2009-09-25 v1

Abstract

A comparative study of the liquid-drop model (LDM) type expansions of energy EE and compression modulus KAK_A is made within the energy density formalism using Skyrme interactions. As compared to the energy expansion, it is found that, in the pure bulk mode of density vibration, the LDM expansion of KAK_A shows an anomalous convergence behaviour due to {\it pair \ effect}. A least squares fit analysis is done to estimate the minimum error, one would expect even with synthetic data due to the inherent nature of the LDM expansion of KAK_A as well as the narrow range of accessible mass number AA, in the values of the various coefficients. The dependence of the higher-order coefficients like curvature and Gauss curvature on the coupling βc\beta_c between the bulk and surface parts of the monopole vibrations is analytically studied. It is shown that the KAK_A - expansion including the dynamical effect ( AA- dependence of βc\beta_c ) shows an `up-turn' behaviour below mass number about 120, suggesting the inapplicability of the LDM expansion of KAK_A over this mass region.

Keywords

Cite

@article{arxiv.nucl-th/9505031,
  title  = {Nuclear incompressibility: An analytical study on leptodermous expansion},
  author = {V. S. Uma Maheswari and V. S. Ramamurthy and L. Satpathy},
  journal= {arXiv preprint arXiv:nucl-th/9505031},
  year   = {2009}
}

Comments

30 latex pages, five figures available on request ( to appear in Phy. Rev. C )

R2 v1 2026-07-22T18:40:12.741Z