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Formation Constraints Indicate a Black Hole Accretor in 47 Tuc X9

机译:形成约束表示47 TUC X9中的黑洞accretor

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The luminous X-ray binary 47 Tuc X9 shows radio and X-ray emission consistent with a stellar-mass black hole (BH) accreting from a carbon-oxygen white dwarf. Its location, in the core of the massive globular cluster 47 Tuc, hints at a dynamical origin. We assess the stability of mass transfer from a carbon-oxygen white dwarf onto compact objects of various masses, and conclude that for mass transfer to proceed stably, the accretor must, in fact, be a BH. Such systems can form dynamically by the collision of a stellar-mass BH with a giant star. Tidal dissipation of energy in the giant's envelope leads to a bound binary with a pericenter separation less than the radius of the giant. An episode of common-envelope evolution follows, which ejects the giant's envelope. We find that the most likely target is a horizontal-branch star, and that a realistic quantity of subsequent dynamical hardening is required for the resulting binary to merge via gravitational wave emission. Observing one binary like 47 Tuc X9 in the Milky Way globular cluster system is consistent with the expected formation rate. The observed 6.8-day periodicity in the X-ray emission may be driven by eccentricity induced in the ultra-compact X-ray binary's orbit by a perturbing companion.
机译:发光X射线二进制47 TUC X9显示了与来自碳 - 氧白色矮种的恒星质量黑洞(BH)一致的无线电和X射线发射。它的位置,在巨大的球状集群47 tuc的核心,暗示动态起源。我们评估从碳 - 氧白矮的稳定性从碳 - 氧白矮种上的各种肿块的紧凑型物体,并得出结论,用于稳定地进行大规模转移,其实是必须是BH。这种系统可以通过与巨星的恒星质量BH的碰撞动态形成。巨型信封中的能量散热导致与围绕巨头半径的围绕分离的结合二进制。遵循普通信封演进的一集,从而弹出了巨人的信封。我们发现最可能的目标是水平分支星,并且通过重力波发射来合并产生的二进制,所以需要一种随后的动态硬化。在银河系球场中观察一个二进制,如47 TUC X9球形簇系统与预期的形成速率一致。观察到的X射线发射中的6.8天周期可以通过扰动伴侣在超紧凑的X射线二元轨道中诱导的偏心来驱动。

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