Two decades of X-ray observations of the isolated neutron star RX J1856.5-3754: detection of thermal and non-thermal hard X-rays and refined spin-down measurement
arXiv:2209.03874 · doi:10.1093/mnras/stac2587
Abstract
The soft X-ray pulsar RX J1856.5-3754 is the brightest member of a small class of thermally-emitting, radio-silent, isolated neutron stars. Its X-ray spectrum is almost indistinguishable from a blackbody with eV, but evidence of harder emission above keV has been recently found. We report on a spectral and timing analysis of RX J1856.5-3754 based on the large amount of data collected by XMM-Newton in 2002--2022, complemented by a dense monitoring campaign carried out by NICER in 2019. Through a phase-coherent timing analysis we obtained an improved value of the spin-down rate Hz s, reducing by more than one order magnitude the uncertainty of the previous measurement, and yielding a characteristic spin-down field of G. We also detect two spectral components above keV: a blackbody-like one with eV and emitting radius m, and a power law with photon index . The power-law 2--8\,keV flux, erg cm s, corresponds to an efficiency of , in line with that seen in other pulsars. We also reveal a small difference between the -- keV and -- keV pulse profiles, as well as some evidence for a modulation above keV. These results show that, notwithstanding its simple spectrum, \eighteen still has a non-trivial thermal surface distribution and features non-thermal emission as seen in other pulsars with higher spin-down power.
10 pages, 7 figures, 5 tables, accepted for publication in MNRAS
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