论文标题

用ska脉冲星的计时阵列揭开第一个超级质量黑洞的形成

Unravelling the formation of the first supermassive black holes with the SKA pulsar timing array

论文作者

Padmanabhan, Hamsa, Loeb, Abraham

论文摘要

高红移处的星系合并引发了其中央超级黑洞的活性,最终也导致了它们的合并 - 这是SKA PULSAR时机(PTA)可检测到的低频引力波的潜在来源。与黑洞加油有关的两个关键参数是Quasar积聚的Eddington比率$η_ {\ rm Edd} $,以及增生过程的辐射效率,$ε$(影响了Quasar,$ T _ {\ rm QSO QSO QSO $ QSO} $)。我们预测了使用SKA PTA的重力波事件可检测性的制度,发现相关的二进制文件具有在数周到几年的范围内具有轨道周期,可通过相对论的多普勒速度提升和/或光曲线的光学变化观察到。将可检测性的SKA制度与有关高红移黑洞质量和发光函数的最新观察性约束结合在一起,以及理论上动机的处方,我们预测,暗物质光环的合并速率,我们预测了SKA PTA事件的主动对应物的数量,因为Ska PTA事件的数量是$ z \ gtrsim $ z \ gtrsim 6 $ 6 $ 6 $。我们发现,最大的黑洞的类星体对应物将在$ z \ gtrsim 6 $的ska pta错误椭圆中为$ {唯一\ lotizable} $。我们还预测了预期的对应物的数量是类星体的爱丁顿比率和活动寿命的函数。我们的结果表明,SKA PTA检测可以对第一个超级质量黑洞的播种和生长机理施加强大的约束。

Galaxy mergers at high redshifts trigger the activity of their central supermassive black holes, eventually also leading to their coalescence -- and a potential source of low-frequency gravitational waves detectable by the SKA Pulsar Timing Array (PTA). Two key parameters related to the fuelling of black holes are the Eddington ratio of quasar accretion $η_{\rm Edd}$, and the radiative efficiency of the accretion process, $ε$ (which affects the so-called active lifetime of the quasar, $t_{\rm QSO}$). We forecast the regime of detectability of gravitational wave events with SKA PTA, finding the associated binaries to have orbital periods on the order of weeks to years, observable through relativistic Doppler velocity boosting and/or optical variability of their light curves. Combining the SKA regime of detectability with the latest observational constraints on high-redshift black hole mass and luminosity functions, and theoretically motivated prescriptions for the merger rates of dark matter haloes, we forecast the number of active counterparts of SKA PTA events expected as a function of primary black hole mass at $z \gtrsim 6$. We find that the quasar counterpart of the most massive black holes will be ${uniquely \ localizable}$ within the SKA PTA error ellipse at $z \gtrsim 6$. We also forecast the number of expected counterparts as a function of the quasars' Eddington ratio and active lifetime. Our results show that SKA PTA detections can place robust constraints on the seeding and growth mechanisms of the first supermassive black holes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源