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      IXPE and NICER view of black hole X-ray binary 4U 1630–47: First significant detection of polarized emission in thermal state

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          ABSTRACT

          We present a detailed spectro-polarimetric study of black hole X-ray binary 4U 1630−47 during its 2022 outburst with IXPE and NICER observations. The source is observed in disc dominated thermal state (kTin ≈ 1.4 keV) with clear detection of absorption features at 6.69 ± 0.01 keV and 6.97 ± 0.01 keV from both NICER as well as IXPE spectra, likely indicating a coupling of disc-wind. A significant degree of polarization (PD) $= 8.33\pm 0.17~{{\ \rm per\ cent}}\(and polarization angle (PA) =17.78° ± 0.60° in the energy range of 2 − 8 keV are measured with IXPE. PD is found to be an increasing function of energy whereas PA remains roughly same within the energy range. Simultaneous energy spectra from NICER in the range of 0.5 − 12 keV are modelled to study the spectral properties. Furthermore, the spin parameter of the black hole is estimated with spectro-polarimetric data as a\)_{\ast }=0.920\pm 0.001\, (1\sigma)$ which is corroborated by NICER observations. Finally, we discuss the implications of our findings.

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          Most cited references43

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          Correlated X‐Ray Spectral and Timing Behavior of the Black Hole Candidate XTE J1550−564: A New Interpretation of Black Hole States

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            The evolution of the timing properties of the black-hole transient GX 339–4 during its 2002/2003 outburst

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              Ubiquitous equatorial accretion disc winds in black hole soft states

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                Author and article information

                Contributors
                (View ORCID Profile)
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                Journal
                Monthly Notices of the Royal Astronomical Society: Letters
                Oxford University Press (OUP)
                1745-3925
                1745-3933
                September 2023
                June 13 2023
                September 2023
                June 13 2023
                June 08 2023
                : 524
                : 1
                : L15-L20
                Article
                10.1093/mnrasl/slad070
                d401bb92-0d66-4868-b81f-4057a972e66d
                © 2023

                https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model

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