Neutron star mass and radius measurements from atmospheric model fits to X-ray burst cooling tail spectra
arXiv:1709.09120 · doi:10.1051/0004-6361/201731082
Abstract
Observations of thermonuclear X-ray bursts from accreting neutron stars (NSs) in low-mass X-ray binary systems can be used to constrain NS masses and radii. Most previous work of this type has set these constraints using Planck function fits as a proxy: both the models and the data are fit with diluted blackbody functions to yield normalizations and temperatures which are then compared against each other. Here, for the first time, we fit atmosphere models of X-ray bursting NSs directly to the observed spectra. We present a hierarchical Bayesian fitting framework that uses state-of-the-art X-ray bursting NS atmosphere models with realistic opacities and relativistic exact Compton scattering kernels as a model for the surface emission. We test our approach against synthetic data, and find that for data that are well-described by our model we can obtain robust radius, mass, distance, and composition measurements. We then apply our technique to Rossi X-ray Timing Explorer observations of five hard-state X-ray bursts from 4U 1702-429. Our joint fit to all five bursts shows that the theoretical atmosphere models describe the data well but there are still some unmodeled features in the spectrum corresponding to a relative error of 1-5% of the energy flux. After marginalizing over this intrinsic scatter, we find that at 68% credibility the circumferential radius of the NS in 4U 1702-429 is R = 12.4+-0.4 km, the gravitational mass is M=1.9+-0.3 Msun, the distance is 5.1 < D/kpc < 6.2, and the hydrogen mass fraction is X < 0.09.
15 pages, 11 figures, submitted to A&A
References in corpus (19)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- Constraints on the Symmetry Energy Using the Mass-Radius Relation of Neutron Stars
- Dos and don'ts of reduced chi-squared
- Chi-square and Poissonian Data: Biases Even in the High-Count Regime and How to Avoid them
- X-ray bursting neutron star atmosphere models using an exact relativistic kinetic equation for Compton scattering
- The effect of accretion on the measurement of neutron star mass and radius in the low-mass X-ray binary 4U 1608-52
- Evidence for enhanced persistent emission during sub-Eddington thermonuclear bursts
- The influence of accretion geometry on the spectral evolution during thermonuclear (type-I) X-ray bursts
- The direct cooling tail method for X-ray burst analysis to constrain neutron star masses and radii
- Detection of burning ashes from thermonuclear X-ray bursts
- X-ray burst induced spectral variability in 4U 1728-34
- Importance of Compton scattering for radiation spectra of isolated neutron stars with weak magnetic fields
- Multidimensional Modeling of Type I X-ray Bursts. II. Two-Dimensional Convection in a Mixed H/He Accretor
- Supersoft X-ray Sources. Parameters of Stellar Atmospheres
- The accretion rate dependence of burst oscillation amplitude
- Diagnosing the burst influence upon accretion in the clocked burster GS 1826--238
- Variable spreading layer in 4U 1608-52 during thermonuclear X-ray bursts in the soft state
- Model Atmospheres for X-ray Bursting Neutron Stars
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- Constraining the Neutron Star Mass-Radius Relation and Dense Matter Equation of State with NICER. I. The Millisecond Pulsar X-ray Data Set
- Phase transitions in neutron stars and their links to gravitational waves
- Maximum mass cutoff in the neutron star mass distribution and the prospect of forming supramassive objects in the double neutron star mergers
- NICER Discovers Spectral Lines During Photospheric Radius Expansion Bursts from 4U 1820-30: Evidence for Burst-driven Winds
- Evidence for the radiation-pressure dominated accretion disk in bursting pulsar GRO J1744-28 using timing analysis
- Burst-induced coronal cooling in GS 1826-24 The clock wagging its tail
- Neutron stars in general relativity and scalar-tensor theory of gravity
- Interactions of Type I X-ray Bursts with Thin Accretion Discs