论文标题
银河黑洞瞬变的轨道周期依赖性空间散射
Orbital period dependent spatial scatter of Galactic Black Hole Transients
论文作者
论文摘要
黑洞在二元系统中的起源和演变中仍然存在明显的不确定性,尤其是关于它们的出生部位和出生踢的影响。这些是长期存在的问题,但是在重力波检测时代和星体测量的精确度提高的时代,他们的辩论已经重现。使用银河黑洞X射线二进制(BHXB)的最新和档案表征,我们在这里报告了p {orb}(系统轨道周期)和散布在Z(升高)之间的明显反相关。高Z处的长期源没有明显的观察偏见,并且在定性上探索了两个可能的解释情况:(1)BHXBS的圆盘起源,然后是Natal踢,在Z中产生散射,只有最紧的二进制室优先生存的强踢; (2)通过球状簇(GCS)中的动态相互作用的p {orb}缩短的光环起源。对于后一种情况,我们在BHXBS和GC之间显示了Z筛分中的对应关系,而GC最紧凑的核心半径<0.1pc。然而,与众多已知的GC Neutron Star XRB相比,在这种情况下,银河GC中爆发BHXB瞬态的已知不存在仍然令人困惑。这些结果为任何黑洞二元进化模型满足的观察性限制提供了一个有趣的观察性约束。
There remain significant uncertainties in the origin and evolution of black holes in binary systems, in particular regarding their birth sites and the influence of natal kicks. These are long-standing issues, but their debate has been reinvigorated in the era of gravitational wave detections and the improving precision of astrometric measurements. Using recent and archival characterisation of Galactic black hole X-ray binaries (BHXBs), we report here an apparent anticorrelation between P{orb} (system orbital periods) and scatter in z (elevation above the Galactic plane). The absence of long period sources at high z is not an obvious observational bias, and two possible explanatory scenarios are qualitatively explored: (1) a disc origin for BHXBs followed by natal kicks producing the scatter in z, with only the tightest binaries preferentially surviving strong kicks; (2) a halo origin, with P{orb} shortening through dynamical interactions in globular clusters (GCs). For the latter case, we show a correspondence in z-scatter between BHXBs and the GCs with most compact core radii of <0.1pc. However, the known absence of outbursting BHXB transients within Galactic GCs remains puzzling in this case, in contrast to the multitude of known GC neutron star XRBs. These results provide an interesting observational constraint for any black hole binary evolutionary model to satisfy.