NuSTAR observation of a Type I X-ray burst from GRS 1741.9-2853
Abstract
We report on two NuSTAR observations of GRS 1741.9-2853, a faint neutron star low mass X-ray binary burster located 10' away from the Galactic center. NuSTAR detected the source serendipitously as it was emerging from quiescence: its luminosity was erg~s on 2013 July 31, and erg~s in a second observation on 2013 August 3. A bright, 800-s long, H-triggered mixed H/He thermonuclear Type I burst with mild photospheric radius expansion (PRE) was present during the second observation. Assuming that the luminosity during the PRE was at the Eddington level, a H mass fraction in the atmosphere, and a neutron star mass , we determine a new lower limit on the distance for this source of kpc. Combining with previous upper limits, this places GRS 1741.9-2853 at a distance of 7 kpc. Energy independent (achromatic) variability is observed during the cooling of the neutron star, which could result from the disturbance of the inner accretion disk by the burst. The large dynamic range of this burst reveals a long power-law decay tail. We also detect, at a 95.6\% confidence level (1.7 ), a narrow absorption line at keV during the PRE phase of the burst, reminiscent of the detection by Waki et al. (1984). We propose that the line, if real, is formed in the wind above the photosphere of the neutron star by a resonant K transition from H-like Cr gravitationally redshifted by a factor , corresponding to a radius range of 29.0 -- 41.4 km for a mass range of 1.4 -- 2.0 .
Keywords
Cite
@article{arxiv.1411.4745,
title = {NuSTAR observation of a Type I X-ray burst from GRS 1741.9-2853},
author = {Nicolas M. Barrière and Roman Krivonos and John A. Tomsick and Matteo Bachetti and Steven E. Boggs and Deepto Chakrabarty and Finn E. Christensen and William W. Craig and Charles J. Hailey and Fiona A. Harrison and Jaesub Hong and Kaya Mori and Daniel Stern and William W. Zhang},
journal= {arXiv preprint arXiv:1411.4745},
year = {2015}
}
Comments
Accepted for publication in The Astrophysical Journal