The relativistic mean-field models tested in previous works against nuclear matter experimental values,critical parameters and macroscopic stellar properties are revisited and used in the evaluation of the symmetry energyγ parameter obtained in three different ways. We have checked that, independent of the choice made to calculate theγ values, a trend of linear correlation is observed between γ and the symmetry energy(S0) and a more clear linear relationship is established between γ and the slope of the symmetry energy(L0). These results directly contribute to the arising of other linear correlations between γ and the neutron star radii of R1.0and R1.4, in agreement with recent findings. Finally, we have found that short-range correlations induce two specific parametrizations, namely,IU-FSU and DD-MEδ, simultaneously compatible with the neutron star mass constraint of 1.93≤Mmax/M☉≤2.05 and with the overlap band for the L0×S0region, to present γ in the range of γ=0.25±0.05.
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Tata Inst Fundamental Res, Dept Nucl & Atom Phys, Mumbai 400005, Maharashtra, IndiaTata Inst Fundamental Res, Dept Nucl & Atom Phys, Mumbai 400005, Maharashtra, India
Nandi, Rana
Char, Prasanta
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Ist Nazl Fis Nucl, Sez Ferrara, Via Saragat 1, I-44100 Ferrara, ItalyTata Inst Fundamental Res, Dept Nucl & Atom Phys, Mumbai 400005, Maharashtra, India
Char, Prasanta
Pal, Subrata
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Tata Inst Fundamental Res, Dept Nucl & Atom Phys, Mumbai 400005, Maharashtra, IndiaTata Inst Fundamental Res, Dept Nucl & Atom Phys, Mumbai 400005, Maharashtra, India