Influence of Nuclear Reaction Rate Uncertainties on Neutron Star Properties Extracted From X-ray Burst Model-Observation Comparisons
arXiv:1812.07155 · doi:10.3847/1538-4357/aafede
Abstract
Type-I X-ray bursts can be used to determine properties of accreting neutron stars via comparisons between model calculations and astronomical observations, exploiting the sensitivity of models to astrophysical conditions. However, the sensitivity of models to nuclear physics uncertainties calls into question the fidelity of constraints derived in this way. Using X-ray burst model calculations performed with the code {\tt MESA}, we investigate the impact of uncertainties for nuclear reaction rates previously identified as influential and compare them to the impact of changes in astrophysical conditions, using the conditions that are thought to best reproduce the source GS 1826-24 as a baseline. We find that reaction rate uncertainties are unlikely to significantly change conclusions about the properties of accretion onto the neutron star surface for this source. However, we find that reaction rate uncertainties significantly hinder the possibility of extracting the neutron star mass-radius ratio by matching the modeled and observed light curves due to the influence of reaction rates on the modeled light curve shape. Particularly influential nuclear reaction rates are and , though other notable impacts arise from , , , , , and . Furthermore, we find that varying some nuclear reaction rates within their uncertainties has an impact on the neutron star crust composition and thermal structure that is comparable to relatively significant changes accretion conditions.
Submitted
References in corpus (15)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- Neutron-star radius constraints from GW170817 and future detections
- The 12C(a,g)16O reaction and its implications for stellar helium burning
- Dependence of X-Ray Burst Models on Nuclear Reaction Rates
- The Effects of Variations in Nuclear Processes on Type I X-Ray Burst Nucleosynthesis
- Models of Type I X-ray Bursts from GS 1826-24: A Probe of rp-Process Hydrogen Burning
- The Impact of Uncertainties in Reaction Q-values on Nucleosynthesis in Type I X-Ray Bursts
- Thermonuclear Bursts with Short Recurrence Times from Neutron Stars Explained by Opacity-Driven Convection
- Ignition latitude and the shape of Type I X-ray bursts
- Constraints on Bygone Nucleosynthesis of Accreting Neutron Stars
- Neutron star cooling and the rp process in thermonuclear X-ray bursts
- Examination of the role of the O(,)F reaction rate in type I x-ray bursts
- Thermonuclear reaction rate of Ne(,)Na from Monte-Carlo calculations
- On the dependence of X-ray burst rate on accretion and spin rate
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