论文标题

极端的质量比重引力波来源:质量隔离和二进制潮汐干扰捕获

Extreme mass-ratio gravitational-wave sources: Mass segregation and post binary tidal-disruption captures

论文作者

Raveh, Yael, Perets, Hagai B.

论文摘要

在超级质量黑洞(MBH)上的引力波(GW)灵感是通过下一代太空出生的GW-detector检测到的一些最有前途的GW来源。这种极端质量比灵感(EMRIS)来源的速率和特征是高度不确定的。它们由MBHS附近的恒星的动力学决定,而紧凑型物体的速率被驱动到MBH的紧密近端。在这里,我们考虑了微弱,强烈的质量分离的核簇,并且在MBH二进制破坏后,恒星的演变被捕获到高度偏心的轨道中。我们利用一种蒙特卡洛方法来建模两个捕获的物体的扩散,并通过两体弛豫过程带来紧凑的对象。我们计算由松弛驱动的物体产生的GW振动速率,并表征EMRIS性质。我们纠正了以前的研究,并表明,松弛驱动的来源产生的含量低于以前发现的GW源,并在弱且强大的质量分离制度中提供详细的EMRI偏心率分布。我们还表明,捕获的二进制局部捕获的明星可能会在大规模分离的簇中引入低含量GW-gw-sources。然而,捕获通道的GW源的偏心率受到松弛过程的强烈影响,并且显着高于先前建议的。我们发现,EMRI的速率和偏心率分布都可以探测MBHS附近的动力学以及被捕获的恒星的贡献,表征了恒星紧凑型物体的质量功能,并验证弱还是强质量隔离过程是在MBHS附近发生的。

The gravitational-wave (GW) inspirals of stellar-mass compact objects onto a supermassive black hole (MBH), are some of the most promising GW sources detectable by next-generation space-born GW-detectors. The rates and characteristics of such extreme mass ratio inspirals (EMRIs) sources are highly uncertain. They are determined by the dynamics of stars near MBHs, and the rate at which compacts objects are driven to the close proximity of the MBH. Here we consider weakly and strongly mass-segregated nuclear clusters, and the evolution of stars captured into highly eccentric orbits following binary disruptions by the MBH. We make use of a Monte-Carlo approach to model the diffusion of both captured objects, and compact-objects brought through two-body relaxation processes. We calculate the rates of GW-inspirals resulting from relaxation-driven objects, and characterize EMRIs properties. We correct previous studies and show that relaxation-driven sources produce GW-sources with lower-eccentricity than previously found, and provide the detailed EMRI eccentricity distribution in the weak and strong mass-segregation regimes. We also show that binary-disruption captured-stars could introduce low-eccentricity GW-sources of stellar black-hole EMRIs in mass-segregated clusters. The eccentricities of the GW-sources from the capture channel, however, are strongly affected by relaxation processes, and are significantly higher than previously suggested. We find that both the rate and eccentricity distribution of EMRIs could probe the dynamics near MBHs, and the contribution of captured stars, characterize the mass-function of stellar compact objects, and verify whether weak or strong mass-segregation processes take place near MBHs.

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