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Constraining the Neutron Star Mass–Radius Relation and Dense Matter Equation of State with NICER. III. Model Description and Verification of Parameter Estimation Codes

Authors :
Slavko Bogdanov
Alexander J. Dittmann
Wynn C. G. Ho
Frederick K. Lamb
Simin Mahmoodifar
M. Coleman Miller
Sharon M. Morsink
Thomas E. Riley
Tod E. Strohmayer
Anna L. Watts
Devarshi Choudhury
Sebastien Guillot
Alice K Harding
Paul S. Ray
Zorawar Wadiasingh
Michael T. Wolff
Craig B. Markwardt
Zaven Arzoumanian
Keith C. Gendreau
Source :
The Astrophysical Journal Letters. 914(1)
Publication Year :
2021
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2021.

Abstract

We describe the X-ray pulse profile models we use and how we use them to analyze Neutron Star Interior Composition Explorer(NICER)observations of rotation-powered millisecond pulsars to obtain information about the mass–radius relation of neutron stars and the equation of state of the dense matter in their cores. Here we detail our modeling of the observed profile of PSR J0030+0451 that we analyzed in Miller et al. and Riley et al. and describe a cross-verification of computations of the pulse profiles of a star with R/M 3, in case stars this compact need to be considered in future analyses. We also present our early cross-verification efforts of the parameter estimation procedures used by Miller et al. and Riley et al. by analyzing two distinct synthetic data sets. Both codes yielded credible regions in the mass–radius plane that are statistically consistent with one another, and both gave posterior distributions for model parameter values consistent with the values that were used to generate the data. We also summarize the additional tests of the parameter estimation procedure of Miller et al. that used synthetic pulse profiles and the NICER pulse profile of PSR J0030+0451. We then illustrate how the precision of mass and radius estimates depends on the pulsar’s spin rate and the size of its hot spot by analyzing four different synthetic pulse profiles. Finally, we assess possible sources of systematic error in the estimates made using this technique, some of which may warrant further investigation.

Subjects

Subjects :
Astrophysics

Details

Language :
English
ISSN :
20418213 and 20418205
Volume :
914
Issue :
1
Database :
NASA Technical Reports
Journal :
The Astrophysical Journal Letters
Notes :
273493.04.01.05
Publication Type :
Report
Accession number :
edsnas.20210026551
Document Type :
Report
Full Text :
https://doi.org/10.3847/2041-8213/abfb79