Spectro-polarimetric study to constrain accretion-ejection properties of MCG-5-23-16 using IXPE and NuSTAR observations

Abstract

We conducted a study on the X-ray polarization properties of MCG-5-23-16 by analyzing long-term monitoring data from NuSTAR jointly with IXPE observations made in May and November 2022. The re-analysis of IXPE data gives model-dependent polarization degree, PD (\%) = 1.080.66 in the energy band 2-8 keV. The model-independent analysis of PD poses an upper limit of ≤3.8 (1σ level) for the same energy band. The observed upper limit of PD, along with broadband spectral analysis (2-79 keV) using an accretion-ejection based model, allowed us to derive the corona geometry (i.e. radius and height) and the accretion disk inclination ( 33). Additional NuSTAR observations were also analyzed to gain insights into the accretion flow properties of the source and to estimate the expected polarization during those epochs with PD 4.3\%. The radius and height of the corona varies between 28.23.1 - 39.84.6 rs and 14.31.7-21.41.9 rs respectively, with a mass outflow rate from the corona measuring 0.140.03-0.20.03 Eddington rate ( m Edd). The spectral analysis further provided an estimate for the mass of the central black hole 2× 107 M and the velocity of the outflowing gas 0.16-0.19c. A comparative broadband spectral study using reflection-based models estimates the disk inclination between 318-457, and yields an expected PD of 3.4-6.0\%. The expected PD measured using accretion-ejection and reflection models is less compared to the expected PD measured for a given disk inclination of 45. Our modeling of the disk-corona-outflows and polarization connection can be extended and validated with data from the recently launched XPoSat, India's first X-ray Polarimeter Satellite, offering potential applications to other sources.

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