论文标题
一种新的方法来限制重力波高红移处的哈勃扩张率
A new approach to constrain the Hubble expansion rate at high redshifts by gravitational waves
论文作者
论文摘要
在高红移处检测大量二进制黑洞(BBH)合并是Lisa太空任务的目标。尽管BBH合并的个别质量是红移的,但BBH合并的质量比独立于其红移。因此,如果质量比和红移之间存在独立的相关性,则可以使用这种关系i)推断合并二进制文件的红移,以及与亮度距离测量($ d_l $)一起,限制了高红移$ h(z)$ h(z)$,II)的固定模型的超级孔种子的宇宙的宇宙的扩展率,以限制超级孔种子的宇宙中。我们讨论为什么大规模BBH的质量比与它们的红移之间存在预期关系,并通过分析BBH合并的宇宙学水动力学模拟来显示这种关系的线索。这种方法开辟了第一次直接测量Redshift $ z \ 2 $的扩展率的可能性。此外,我们发现了种子质量和大量BBH的质量比之间的趋势,这本身就是一个主要结果,可以利用它来限制超质量BH种子的形成场景。
Detection of massive binary black hole (BBH) mergers at high redshifts is a target for LISA space mission. While the individual masses of a BBH merger are redshifted, the mass ratio of BBH mergers is independent of their redshift. Therefore, if there is an independent correlation between the mass ratio and redshift, such a relationship can be used to i) infer the redshift of the merging binaries, and together with the luminosity distance measurement ($D_L$), constrain the expansion rate of the universe at high redshifts $H(z)$, and ii) constrain models of supermassive black hole seed formation in the universe assuming a fixed cosmology. We discuss why there is an expected relation between the mass ratio of the massive BBHs with their redshift and show the clues for this relation by analyzing cosmological hydrodynamical simulations of BBH mergers. This approach opens up the possibility of directly measuring the expansion rate at redshift $z \approx 2$ with LISA for the first time. Moreover, we discover a trend between seed mass and mass ratio of massive BBHs which by itself is a major result that could be exploited to constrain the formation scenarios of supermassive BH seeds.