The radius of the quiescent neutron star in the globular cluster M13

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Abstract

X-ray spectra of quiescent low-mass X-ray binaries containing neutron stars can be fit with atmosphere models to constrain the mass and the radius. Mass-radius constraints can be used to place limits on the equation of state of densematter.We perform fits to the X-ray spectrum of a quiescent neutron star in the globular clusterM13, utilizing data from ROSAT, Chandra, and XMM-Newton, and constrain the mass-radius relation. Assuming an atmosphere composed of hydrogen and a 1.4M⊙ neutron star, we find the radius to be RNS = 12.2-1.1+1.5 km, a significant improvement in precision over previous measurements. Incorporating an uncertainty on the distance to M13 relaxes the radius constraints slightly and we find RNS = 12.3-1.7+1.9-1.7 km (for a 1.4M⊙ neutron star with a hydrogen atmosphere), which is still an improvement in precision over previous measurements, some of which do not consider distance uncertainty. We also discuss how the composition of the atmosphere affects the derived radius, finding that a helium atmosphere implies a significantly larger radius.

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Shaw, A. W., Heinke, C. O., Steiner, A. W., Campana, S., Cohn, H. N., Ho, W. C. G., … Servillat, M. (2018). The radius of the quiescent neutron star in the globular cluster M13. Monthly Notices of the Royal Astronomical Society, 476(4), 4713–4718. https://doi.org/10.1093/mnras/sty582

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