论文标题
检测具有极高质量比灵感的标量场
Detecting scalar fields with Extreme Mass Ratio Inspirals
论文作者
论文摘要
我们研究了极端质量比的灵感(EMRI),在此期间,小体螺旋成具有其他标量场的重力理论的超质量黑洞。我们首先争辩说,无头性定理和设法绕过它们的已知理论的特性引入了问题:标量对超级质量黑洞的影响(如果有的话)在广泛的理论中对于Emris来说大多可忽略不计。然后,我们利用这种简化来对灵感进行扰动建模,并证明小体的标量电荷在重力波发射上留下了明显的烙印。尽管波形建模需要更高的精度,但我们的结果强烈表明,Lisa可以观察到这种烙印,从而使Emris有望的标量场探针。
We study Extreme Mass Ratio Inspirals (EMRIs), during which a small body spirals into a supermassive black hole, in gravity theories with additional scalar fields. We first argue that no-hair theorems and the properties of known theories that manage to circumvent them introduce a drastic simplification to the problem: the effects of the scalar on supermassive black holes, if any, are mostly negligible for EMRIs in vast classes of theories. We then exploit this simplification to model the inspiral perturbatively and we demonstrate that the scalar charge of the small body leaves a significant imprint on gravitational wave emission. Although much higher precision is needed for waveform modelling, our results strongly suggest that this imprint is observable with LISA, rendering EMRIs promising probes of scalar fields.