An IXPE-led X-Ray Spectropolarimetric Campaign on the Soft State of Cygnus X-1: X-Ray Polarimetric Evidence for Strong Gravitational Lensing
Published: 07/2024
(Left) CygX-1 light curve in optical and radio over the span of the IXPE campaign (redbars). Radio data from AMI and RATAN reveal ongoing weak jet activity, with a potential flare near Epoch 4. V-band optical data from LCO shows structured variation at low amplitude (≲10%), with emission dominated by the companionstar. The same substructure also appears in B, r′, and i′ bands (not shown here). Hα line-strength factors from the Perek Telescope are shown in green. The larger time base line of this monitoring reveals that high line strength factor is associated with a decrease in X-ray and increase in radio flux (increasing Hα in the companion’s stellar wind). Light curves are in mJy unless otherwise indicated. (Right) MAXI hardness-intensity diagram of CygX-1, with the 5IXPE soft-state epochs marked in red and the two hard states in blue.
Steiner James F.; Nathan Edward; Trushkin, Sergei A., et al.
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 the Imaging X-ray Polarimetry Explorer's (IXPE) 2–8 keV bandpass. The polarized X-rays exhibit an energy-independent polarization angle of PA = ‑25.°7 ± 1.°8 east of north (68% confidence). This is consistent with being aligned to Cyg X-1's au-scale compact radio jet and its parsec-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 temperature, we find the appearance of a consistent trend line in the polarization degree between the soft and hard states. Our favored polarimetric model indicates that Cyg X-1's spin is likely high (a * ≳ 0.96). The substantial X-ray polarization in Cyg X-1's soft state is most readily explained as resulting from a large portion of X-rays emitted from the disk returning and reflecting off the disk surface, generating a high polarization degree and a polarization direction parallel to the black hole spin axis and radio jet. In IXPE's bandpass, the polarization signal is dominated by the returning reflection emission. This constitutes polarimetric evidence for strong gravitational lensing of X-rays close to the black hole.