Crustal properties of a neutron star within an effective relativistic mean-field model
Abstract
We use the effective relativistic mean-field (E-RMF) model to study the crustal properties of the neutron star. The unified equations of state (EoS) are constructed using recently developed E-RMF parameter sets, such as FSUGarnet, IOPB-I, and G3. The outer crust composition is determined using the atomic mass evaluation 2020 data [Huang et al. Chin. Phys. C 45, 030002 (2021), 10.1088/1674-1137/abddb0 along with the available Hartree-Fock-Bogoliubov mass models [Goriely et al. Phys. Rev. C 88, 024308 (2013), 10.1103/PhysRevC.88.024308 for neutron-rich nuclei. The structure of the inner crust is estimated by performing the compressible liquid drop model calculations using the same E-RMF functional as that for the uniform nuclear matter in the liquid core. Various neutron star properties such as mass-radius (M -R ) relation, the moment of inertia (I ), the fractional crustal moment of inertia (Icrust/I ), mass (Mcrust ) and thickness (lcrust) of the crust are calculated with three unified EoSs. The crustal properties are found to be sensitive to the density-dependent symmetry energy and slope parameter advocating the importance of the unified treatment of neutron star EoS. The three unified EoSs, IOPB-I-U, FSUGarnet-U, and G3-U, reproduced the observational data obtained with different pulsars, NICER, and glitch activity and are found suitable for further description of the structure of the neutron star.
- Publication:
-
Physical Review D
- Pub Date:
- February 2022
- DOI:
- arXiv:
- arXiv:2111.07278
- Bibcode:
- 2022PhRvD.105d3017P
- Keywords:
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- Nuclear Theory;
- Astrophysics - High Energy Astrophysical Phenomena
- E-Print:
- 19 pages, 14 figures, 7 tables, Published in Phys. Rev. D. The unified equations of states are available in the GitHub link - https://github.com/hcdas/Unified_eos