Effects of Nuclear Equation of State on Type-I X-ray Bursts: Interpretation of the X-ray Bursts from GS 1826-24
arXiv:2105.13958 · doi:10.3847/1538-4357/ac2821
Abstract
Type I X-ray bursts are thermonuclear explosions on the neutron star (NS) surface caused by mass accretion from a companion star. Observations of X-ray bursts provide valuable information on X-ray binary systems, e.g., binary parameters, the chemical composition of accreted matter, and the nuclear equation of state (EOS) of NSs. There have been several theoretical studies to constrain the physics of X-ray bursters. However, they have mainly focused on the burning layers above the solid crust of the NS, which brings up issues of the treatment of NS gravitation and internal energy. In this study, focusing on the microphysics inside NSs, we calculate a series of X-ray bursts using a general-relativistic stellar-evolution code with several NS EOSs. We compare the X-ray-burst models with the burst parameters of a clocked burster associated with GS 1826-24. We find a monotonic correlation between the NS radius and the light-curve profile. A larger radius shows a higher recurrence time and a large peak luminosity. In contrast, the dependence of light curves on the NS mass becomes more complicated, where the neutrino cooling suppresses the efficiency of nuclear ignition. We also constrain the EOS and mass of GS 1826-24, i.e., stiffer EOSs, corresponding to larger NS radii, are not preferred due to too-high peak luminosity. The EOS and the cooling and heating of NSs are important to discuss the theoretical and observational properties of X-ray bursts.
19 pages, 16 figures, 3 tables, updated to match published version (ApJ)
References in corpus (14)
- Shapiro delay measurement of a two solar mass neutron star
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- A NICER view of PSR J0030+0451: Implications for the dense matter equation of state
- Models of crustal heating in accreting neutron stars
- Nuclear equation of state for core-collapse supernova simulations with realistic nuclear forces
- X-ray binaries
- Models of Type I X-ray Bursts from GS 1826-24: A Probe of rp-Process Hydrogen Burning
- Nucleosynthesis in Type I X-ray Bursts
- Was GW170817 a canonical neutron star merger? Bayesian analysis with a third family of compact stars
- Superburst Models for Neutron Stars with Hydrogen and Helium-Rich Atmospheres
- Influence of Nuclear Reaction Rate Uncertainties on Neutron Star Properties Extracted From X-ray Burst Model-Observation Comparisons
- Deep crustal heating for realistic compositions of thermonuclear ashes
Cited by in corpus (7)
- Dense Matter in Neutron Stars with eXTP
- Impacts of the direct URCA and Superfluidity inside a Neutron Star on Type-I X-Ray Bursts and X-Ray Superbursts
- NinjaSat monitoring of Type-I X-ray bursts from the clocked burster SRGA J144459.2604207
- The Impacts of Neutron-Star Structure and Base Heating on Type I X-Ray Bursts and Code Comparison
- A New Constraint on the Nuclear Equation of State from Statistical Distributions of Compact Remnants of Supernovae
- Gravitational wave asteroseismology of accreting neutron stars in a steady state
- Return of the Clocked Burster: Exceptionally Short Recurrence Time in GS 1826-238