论文标题
约束(P)BH二进制的合并历史的变化与随机重力波背景
Constraining changes in the merger history of (P)BH binaries with the stochastic gravitational wave background
论文作者
论文摘要
来自原始黑洞的分布的黑洞二进制文件可能会显示出很大的合并速率,直到大红移。使用合并率的现象学模型,我们表明其斜率变化,直至红移$ z \ sim 4 $,受到当前限制在Ligo/Pirgo O3运行的随机重力波背景上的幅度上的限制。这表明随机背景约束红移的合并速率大于单个事件的检测范围(同一检测器的$ z \ simeq 1 $)。此外,我们表明,对于陡峭的合并,中等频率下随机重力波信号的形状与通常的$ 2/3 $ ir缩放不同。我们讨论了我们模型对未来实验的含义,例如设计Ligo/Wigo Array,Einstein望远镜,Lisa和PTA。另外,我们表明i)i)随机背景和当前的合并速率在限制界限上,对pBH的丰度同样限制,这是由不均匀性的高斯分布和ii)在随机背景级别上进行的变性(即,通过相似的随机范围的不同随机范围的范围都可以折断,在随机背景的级别上进行了脱色,可以通过数量差异来识别。爱因斯坦望远镜。
Black holes binaries coming from a distribution of primordial black holes might exhibit a large merger rate up to large redshifts. Using a phenomenological model for the merger rate, we show that changes in its slope, up to redshifts $z\sim 4$, are constrained by current limits on the amplitude of the stochastic gravitational wave background from LIGO/Virgo O3 run. This shows that the stochastic background constrains the merger rate for redshifts larger than the single event horizon of detection ($z\simeq 1$ for the same detector). Moreover, we show that for steep merger rates the shape of the stochastic gravitational wave signal at intermediate frequencies differs from the usual $2/3$ IR scaling. We discuss the implications of our model for future experiments in a wide range of frequencies, as the design LIGO/Virgo array, Einstein Telescope, LISA and PTA. Additionally, we show that i) the stochastic background and the present merger rate provide equally constraining bounds on the abundance of PBHs arising from a Gaussian distribution of inhomogeneities and ii) Degeneracies at the level of the stochastic background (i.e. different merger histories leading to a similar stochastic background) can be broken by considering the complementary direct observation of the merger rate from number counts by future detectors such as the Einstein Telescope.