Properties and microscopic structures of dense stellar matter in RMF models
arXiv:2506.11492 · doi:10.1103/x9fk-ykm1
Abstract
Data tables on the equation of state (EOS) and microscopic structures for cold dense stellar matter with proton fractions - and baryon number densities - are obtained adopting 13 different relativistic density functionals, i.e., NL3, PK1, PK1r, GM1, MTVTC, DD-LZ1, PKDD, DD-ME2, TW99, DD-MEX, DD-MEX1, DD-MEX2, and DD-MEY. The EOSs of dense stellar matter inside neutron stars with baryon number densities - are obtained as well fulfilling -stability condition. In general, the dense stellar matter exhibits droplet phase at , while more exotic structures such as rods, slabs, tubes, and bubbles appear sequentially as density increases. The critical proton fractions (-0.31) for neutron drip are obtained, where neutron gas emerges outside of nuclei at . For dense stellar matter at small densities () or large proton fractions ( and ), the EOSs and microscopic structures are generally insensitive to the adopted density functionals. With the onset of neutron drip at , the uncertainties emerge and peak at within the range . At , the dense stellar matter becomes uniform and muons eventually appear, where the uncertainties in the EOSs grow significantly.
Data tables can be found at: http://teacher.yzu.edu.cn/CJXia/en/lwcg/492393/content/94917.htm#lwcg
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