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Constraints on nuclear matter parameters of an Effective Chiral Model

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arxiv 0811.4233 v2 pith:32QM7RVU submitted 2008-11-26 nucl-th hep-ph

classification nucl-thhep-ph
keywords nuclearmodeleffectiveparameterschiralconstraintsmassmatter
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abstract

Within an effective non-linear chiral model, we evaluate nuclear matter parameters exploiting the uncertainties in the nuclear saturation properties. The model is sternly constrained with minimal free parameters, which display the interlink between nuclear incompressibility ($K$), the nucleon effective mass ($m^{\star}$), the pion decay constant ($f_{\pi}$) and the $\sigma-$meson mass ($m_{\sigma}$). The best fit among the various parameter set is then extracted and employed to study the resulting Equation of state (EOS). Further, we also discuss the consequences of imposing constraints on nuclear EOS from Heavy-Ion collision and other phenomenological model predictions.

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    DM admixture in isentropic neutron stars can mimic quark-matter conformality signatures via competition between thermal effects and dark sector softening.

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