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Dramatic Drop in the X-Ray Polarization of Swift J1727.8$-$1613 in the Soft Spectral State

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arxiv 2403.04689 v2 pith:HOLR7HYR submitted 2024-03-07 astro-ph.HE

classification astro-ph.HE
keywords x-raypolarizationstatehardsoftspectralstatesaccretion
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abstract

Black-hole X-ray binaries exhibit different spectral and timing properties in different accretion states. The X-ray outburst of a recently discovered and extraordinarily bright source, Swift$~$J1727.8$-$1613, has enabled the first investigation of how the X-ray polarization properties of a source evolve with spectral state. The 2$-$8 keV polarization degree was previously measured by the Imaging X-ray Polarimetry Explorer (IXPE) to be $\approx$ 4% in the hard and hard intermediate states. Here we present new IXPE results taken in the soft state, with the X-ray flux dominated by the thermal accretion-disk emission. We find that the polarization degree has dropped dramatically to $\lesssim$ 1%. This result indicates that the measured X-ray polarization is largely sensitive to the accretion state and the polarization fraction is significantly higher in the hard state when the X-ray emission is dominated by up-scattered radiation in the X-ray corona. The combined polarization measurements in the soft and hard states disfavor a very high or low inclination of the system.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Spectropolarimetric detection of baryonic mass loading in a transient relativistic jet: application to the black hole X-ray binary Swift J1727.8$-$1613

    astro-ph.HE 2026-07 conditional novelty 7.0 of 10

    Transient Faraday-complex spectropolarimetric structure detected during radio flaring of Swift J1727 implies internal Faraday rotation from electron-proton jet plasma with rotating mass ~10^21 g, a small fraction of a...

  2. The peculiar hard state behaviour of the black hole X-ray binary Swift J1727.8$-$1613

    astro-ph.HE 2025-06 conditional novelty 6.0 of 10

    In its 2023-2024 outburst, the black hole binary Swift J1727.8-1613 showed one of the most radio-quiet radio-X-ray tracks known, with X-ray spectral softening beginning just as the track changed slope.

  3. Comprehensive Radio Monitoring of the Black Hole X-ray Binary Swift J1727.8$-$1613 during its 2023$-$2024 Outburst

    astro-ph.HE 2025-06 accept novelty 6.0 of 10

    A 197-epoch, 0.3-230 GHz radio light curve of the black hole X-ray binary Swift J1727 documents its full 2023-2024 outburst, including ~1 Jy jet ejection flares and steep radio spectra down to alpha = -1.86.

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