In GX 13+1, X-ray polarization degree rises and the polarization angle swings by about 70 degrees between dip and off-dip states, following changes in source hardness and intensity.
X-ray polarization from accretion disk winds
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
X-ray polarimetry is a fine tool to probe the accretion geometry and physical processes operating in the proximity of compact objects, black holes and neutron stars. Recent discoveries made by the Imaging X-ray Polarimetry Explorer put our understanding of the accretion picture in question. The observed high levels of X-ray polarization in X-ray binaries and active galactic nuclei are challenging to achieve within the conventional scenarios. In this work we investigate a possibility that a fraction (or even all) of the observed polarized signal arises from scattering in the equatorial accretion disk winds, the slow and extended outflows, which are often detected in these systems via spectroscopic means. We find that the wind scattering can reproduce the levels of polarization observed in these sources.
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X-ray Dips and Polarization Angle Swings in GX 13+1
In GX 13+1, X-ray polarization degree rises and the polarization angle swings by about 70 degrees between dip and off-dip states, following changes in source hardness and intensity.