Evidence for a Black Hole Spin–Orbit Misalignment in the X-Ray Binary Cyg X-1

Author:

Zdziarski Andrzej A.ORCID,Veledina AlexandraORCID,Szanecki MichałORCID,Green David A.ORCID,Bright Joe S.ORCID,Williams David R. A.ORCID

Abstract

Abstract Recently, the accretion geometry of the black hole X-ray binary Cyg X-1 was probed with the X-ray polarization. The position angle of the X-ray-emitting flow was found to be aligned with the position angle of the radio jet in the plane of the sky. At the same time, the observed high polarization degree could be obtained only for a high inclination of the X-ray-emitting flow, indicating a misalignment between the binary axis and the black hole spin. The jet, in turn, is believed to be directed by the spin axis; hence, a similar misalignment is expected between the jet and binary axes. We test this hypothesis using very long (up to about 26 yr) multiband radio observations. We find a misalignment of 20°–30°. However, contrary to the earlier expectations, the jet and binary viewing angles are found to be similar, while the misalignment is seen between the position angles of the jet and the binary axis on the plane of the sky. Furthermore, the presence of the misalignment calls into question our understanding of the evolution of this binary system.

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Swift J1727.8–1613 Has the Largest Resolved Continuous Jet Ever Seen in an X-Ray Binary;The Astrophysical Journal Letters;2024-08-01

2. What Is the Black Hole Spin in Cyg X-1?;The Astrophysical Journal Letters;2024-05-01

3. X-ray polarization properties of thermal-radiative disc winds in binary systems;Monthly Notices of the Royal Astronomical Society;2023-11-24

4. A relativistic outflow model of the X-ray polarization in Cyg X-1;Monthly Notices of the Royal Astronomical Society: Letters;2023-11-13

5. Peering into the tilted heart of Cyg X-1 with high-precision optical polarimetry;Astronomy & Astrophysics;2023-10

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