Relativistic Mean-Field Model with Scaled Hadron Masses and Couplings
arXiv:0802.3999 · doi:10.1016/j.nuclphysa.2008.09.013
Abstract
Here we continue to elaborate properties of the relativistic mean-field based model (SHMC) proposed in ref. [6] where hadron masses and coupling constants depend on the -meson field. The validity of approximations used in [6] is discussed. We additionally incorporate contribution of meson excitations to the equations of motion. We also estimate the effects of the particle width. It is demonstrated that the inclusion of the baryon-baryon hole and baryon-antibaryon loop terms, if performed perturbatively, destroys the consistency of the model.
44 pages, 14 figures; corrected according to referee's remarks, version accepted for publication in Nucl. Phys. A
References in corpus (9)
- Constraints on the high-density nuclear equation of state from the phenomenology of compact stars and heavy-ion collisions
- Relativistic model for nuclear matter and atomic nuclei with momentum-dependent self-energies
- Hadronic resonance production in +Au collisions at = 200 GeV at RHIC
- critRHIC: The RHIC Low Energy Program
- Equation of State for Hot and Dense Matter: -- Model with Scaled Hadron Masses and Couplings
- Medium Modifcations of Mesons in Elementary Reactions and Heavy-Ion Collisions
- Complete Relativistic Description of the N*(1520)
- The high density equation of state: constraints from accelerators and astrophysics
- A Hidden Local Field Theory Description of Dileptons in Relativistic Heavy Ion Collisions