Relativity Damps OPEP in Nuclear Matter
Abstract
Using a relativistic Dirac-Brueckner analysis the OPEP contribution to the ground state energy of nuclear matter is studied. In the study the pion is derivative-coupled. We find that the role of the tensor force in the saturation mechanism is substantially reduced compared to its dominant role in a usual nonrelativistic treatment. We show that the damping of derivative-coupled OPEP is actually due to the decrease of with increasing density. We point out that if derivative-coupled OPEP is the preferred form of nuclear effective lagrangian nonrelativistic treatment of nuclear matter is in trouble. Lacking the notion of it cannot replicate the damping. We suggest an examination of the feasibility of using pseudoscalar coupled N interaction before reaching a final conclusion about nonrelativistic treatment of nuclear matter.
Cite
@article{arxiv.nucl-th/9806054,
title = {Relativity Damps OPEP in Nuclear Matter},
author = {Manoj K. Banerjee},
journal= {arXiv preprint arXiv:nucl-th/9806054},
year = {2007}
}
Comments
9 pages, 3 figures, in honor of Joseph Speth's 60th birthday