Abstract
We present modelling ofX-ray polarization spectra emerging from the two competing scenarios that are proposed to explain the broad Fe Kα line in the Seyfert 1 galaxy MCG-6-30-15. The polarization signature of complex absorption is studied for a partial covering scenario using a clumpy wind and compared to a reflection model based on the lamppost geometry. The shape of the polarization percentage and angle as a function of photon energy are found to be distinctly different between the reflection and the absorption cases. Relativistic reflection produces significantly stronger polarization in the 1-10 keV energy band than absorption. The spectrum of the polarization angle adds additional constraints: in the absorption case it shows a constant shape, whereas the relativistic reflection scenario typically leads to a smooth rotation of the polarization angle with photon energy. Based on this work, we conclude that a soft X-ray polarimeter onboard a small X-ray satellite may already discriminate between the absorption and the reflection scenarios. A promising opportunity may arise with the X-ray Imaging Polarimetry Explorer mission, which has been proposed to the European Space Agency in response to a small-size (S-class) mission call due for launch in 2017. ©. 2012 The Authors Monthly Notices of the Royal Astronomical Society © 2012 RAS.
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Marin, F., Goosmann, R. W., Dov̌ciak, M., Muleri, F., Porquet, D., Grosso, N., … Matt, G. (2012). X-ray polarimetry as a new tool to discriminate reflection from absorption scenarios, predictions for MCG-6-30-15. Monthly Notices of the Royal Astronomical Society: Letters, 426(1). https://doi.org/10.1111/j.1745-3933.2012.01335.x
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