We report on the average and orbital phase-resolved polarization of Cyg X-3 in the hard state (HS) during the 2023 Imaging X-ray Polarimetry Explorer (IXPE) observational campaign. We find the polarization degree of 21.4% ± 0.4% and polarization angle of (Formula presented) 92.°2±0.°5, compatible within 3σ with the first HS IXPE observation in 2022. As the observed polarization depends on both the accretion geometry and the X-ray emission mechanism, and assuming it arises from reflection from the optically thick envelope surrounding the central source, our result indicates that both are similar in the two HS epochs on year-long timescales despite the source transitioning through an intermediate state in between. We discuss time- and energy-dependent polarization properties and their implications for the geometry and stability of the accretion funnel, finding significant orbital modulation of the polarization properties.

Mikušincová, R., Veledina, A., Muleri, F., Ciancarella, R., Zdziarski, A., Green, D.A., et al. (2026). Super-Eddington Accretion Geometry: A Remarkable Stability of the Hidden Ultraluminous X-Ray Source Cygnus X-3. THE ASTROPHYSICAL JOURNAL, 1005(1) [10.3847/1538-4357/ae7366].

Super-Eddington Accretion Geometry: A Remarkable Stability of the Hidden Ultraluminous X-Ray Source Cygnus X-3

Bianchi, Stefano;Matt, Giorgio;Petrucci, Pierre-Olivier;Ursini, Francesco;Antonelli, Lucio A.;De Rosa, Alessandra;Marinucci, Andrea;Taverna, Roberto;
2026-01-01

Abstract

We report on the average and orbital phase-resolved polarization of Cyg X-3 in the hard state (HS) during the 2023 Imaging X-ray Polarimetry Explorer (IXPE) observational campaign. We find the polarization degree of 21.4% ± 0.4% and polarization angle of (Formula presented) 92.°2±0.°5, compatible within 3σ with the first HS IXPE observation in 2022. As the observed polarization depends on both the accretion geometry and the X-ray emission mechanism, and assuming it arises from reflection from the optically thick envelope surrounding the central source, our result indicates that both are similar in the two HS epochs on year-long timescales despite the source transitioning through an intermediate state in between. We discuss time- and energy-dependent polarization properties and their implications for the geometry and stability of the accretion funnel, finding significant orbital modulation of the polarization properties.
2026
Mikušincová, R., Veledina, A., Muleri, F., Ciancarella, R., Zdziarski, A., Green, D.A., et al. (2026). Super-Eddington Accretion Geometry: A Remarkable Stability of the Hidden Ultraluminous X-Ray Source Cygnus X-3. THE ASTROPHYSICAL JOURNAL, 1005(1) [10.3847/1538-4357/ae7366].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/554077
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