An IXPE-Led X-ray Spectro-Polarimetric Campaign on the Soft State of Cygnus X-1: X-ray Polarimetric Evidence for Strong Gravitational Lensing
James F. Steiner, Edward Nathan, Kun Hu, Henric Krawczynski, Michal, Dovciak, Alexandra Veledina, Fabio Muleri, Jiri Svoboda, Kevin Alabarta,, Maxime Parra, Yash Bhargava, Giorgio Matt, Juri Poutanen, Pierre-Olivier, Petrucci, Allyn F. Tennant, M. Cristina Baglio, Luca Baldini

TL;DR
This study presents the first X-ray spectropolarimetric observations of Cygnus X-1 in its soft state, revealing polarization evidence consistent with strong gravitational lensing near the black hole and indicating a high spin parameter.
Contribution
It provides novel X-ray spectropolarimetric data for Cygnus X-1's soft state, demonstrating polarization patterns consistent with gravitational lensing and high black hole spin, using IXPE observations.
Findings
X-ray polarization degree is about 2% and increases with energy.
Polarization angle is aligned with the radio jet and remains energy-independent.
Results suggest a high black hole spin (a* > 0.96) and polarization dominated by disk reflection.
Abstract
We present the first X-ray spectropolarimetric results for Cygnus X-1 in its soft state from a campaign of five IXPE observations conducted during 2023 May-June. Companion multiwavelength data during the campaign are likewise shown. The 2-8 keV X-rays exhibit a net polarization degree PD=1.99%+/-0.13% (68% confidence). The polarization signal is found to increase with energy across IXPE's 2-8 keV bandpass. The polarized X-rays exhibit an energy-independent polarization angle of PA=-25.7+/-1.8 deg. East of North (68% confidence). This is consistent with being aligned to Cyg X-1's AU-scale compact radio jet and its pc-scale radio lobes. In comparison to earlier hard-state observations, the soft state exhibits a factor of 2 lower polarization degree, but a similar trend with energy and a similar (also energy-independent) position angle. When scaling by the natural unit of the disk…
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