论文标题
具有极高质量比灵感的Kerr结合的模型独立测试
Model independent tests of the Kerr bound with extreme mass ratio inspirals
论文作者
论文摘要
一般相对论的出色预测是,具有质量$μ$的孤立黑洞的角动量$ s $受Kerr绑定的限制,即$ s \ leqgμ^2/c $。由于难以建模违反该界限的旋转紧凑物体,因此测试这个基石是具有挑战性的。我们认为,可以通过测量超级质量比围绕超质量对象的极端质量比的重力波来实现精确的,独立的测试,这是未来丽莎任务的主要目标之一。在极端质量比极限中,小型对象的动力学仅取决于其多极矩,这是自由参数。在与可比质量的情况下不同的情况下,当小物体的旋转大大超过Kerr结合时,准确的波形也有效。通过计算圆形的轨道脱位和重力波信号,该信号是由圆形,不必要的赤道运动围绕Kerr Black Hole发出的,我们估计丽莎将能够在$ 10 \%$的水平上测量小型紧凑型物体的旋转。加上质量测量值,这将允许在诸如“ SuperSpinars”之类的字符串理论启发的对象上进行理论敏捷的,前所未有的约束,几乎在其整个参数空间中。
An outstanding prediction of general relativity is the fact that the angular momentum $S$ of an isolated black hole with mass $μ$ is limited by the Kerr bound, $S\leq Gμ^2/c$. Testing this cornerstone is challenging due to the difficulty in modelling spinning compact objects that violate this bound. We argue that precise, model-independent tests can be achieved by measuring gravitational waves from an extreme mass ratio inspiral around a supermassive object, one of the main targets of the future LISA mission. In the extreme mass ratio limit, the dynamics of the small compact object depends only on its multipole moments, which are free parameters. At variance with the comparable-mass case, accurate waveforms are valid also when the spin of the small object greatly exceeds the Kerr bound. By computing the orbital dephasing and the gravitational-wave signal emitted by a spinning point particle in circular, nonprecessing, equatorial motion around a Kerr black hole, we estimate that LISA will be able to measure the spin of the small compact object at the level of $10\%$. Together with mass measurements, this will allow for theory-agnostic, unprecedented constraints on string-theory inspired objects such as "superspinars", almost in their entire parameter space.