paper

NuSTAR view of the Z-type neutron star low-mass X-ray binary Cygnus~X--2

arXiv:1708.01032 · doi:10.1093/mnras/stx2931

Abstract

We report on the \nustar{} observation of the Z-type neutron star low-mass X-ray binary Cygnus X--2 performed on 7 January 2015. During this observation, the source exhibited sudden decrease in count rate (dips) and stronger variability in $3-79\kev$ X-ray lightcurve. The hardness-intensity diagram shows that the source remained in the so-called \quotes{normal branch} of the Z-track, although an extended \quotes{flaring branch} is observed during the dips. The source was in a soft spectral state with the $3-45\kev$ luminosity of erg s, assuming a distance of 8 kpc. Both the non-dip and dip X-ray spectra are well represented by models in which the soft band is dominated by the emission from the disc, while the hard X-ray band is dominated by the Comptonized emission from the boundary layer/corona and its reflected emission from the disc. The X-ray spectrum also revealed a broad Fe K emission line which is nearly symmetric at the higher flux and asymmetric when the flux is reduced by a factor of . The relativistic reflection model predicts the inner radius of the accretion disc as Km) for the non-dip state and Km) for the dip state. If the inner disc is truncated due to the pressure arising from a magnetic field, this implies an upper limit of the magnetic field strength of G at the magnetic poles which is consistent with other estimates.

Accepted for publication in MNRAS

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NuSTAR view of the Z-type neutron star low-mass X-ray binary Cygnus~X--2 · wovepaper