论文标题
二进制黑洞对宇宙学和修改的重力波摩擦的当前和未来限制
Current and future constraints on cosmology and modified gravitational wave friction from binary black holes
论文作者
论文摘要
在此程序中,我们对深色重力波标准警笛感兴趣及其在宇宙学和约束重力理论的使用。由于其传播方程中引入的额外摩擦项,这些理论预测了电磁波和重力波(GWS)的不同光度距离。可以通过两个变量$ξ_0$和$ n $参数来参数,可以从重力波观测中测量,特别是从Ligo和Pirgo检测到的二进制黑洞(BBH)合并。通过将共同的BBH总体模型拟合在质量和红移中,宇宙学参数以及修改后的GW发光度距离为$ \ sim $ \ sim $ 60 $ 60信号在前三个Ligo/Pirgo观察过程中,我们得出结论,总体相对论是一致的首选模型。还考虑了未来的观察结果O4和O5。使用相同的方法,如果GR是正确的重力理论,则使用相同的方法,预测修改后的重力参数$ 51 \%$ $ 51 \%$的测量不确定性和O4和O5的$ 20 \%$,如果GR是正确的重力理论。但是,我们强调说,天体物理,宇宙学和修饰的重力参数之间存在很强的相关性,如果假定错误的先验,可能会导致偏见。
In this proceedings, we are interested in dark gravitational wave standard sirens and their use for cosmology and for constraining modified gravity theories. Due to the extra friction term introduced in their propagation equation those theories predict different luminosity distances for electromagnetic and gravitational waves (GWs). This effect can be parametrized by the two variables $Ξ_0$ and $n$, that can be measured from gravitational wave observations, and specifically from the binary black hole (BBH) mergers detected by LIGO and Virgo. By fitting jointly BBH population models in mass and redshift, the cosmological parameters, and the modified GW luminosity distance to $\sim$ 60 signals observed during the first three LIGO/Virgo observation runs, we conclude that general relativity is consistently the preferred model. The future observation runs O4 and O5 are also considered. Using the same approach, we forecast a measurement uncertainty on the modified gravity parameter $Ξ_0$ of $51\%$ with O4, and $20\%$ with O4 and O5, respectively if GR is the correct theory of gravity. However, we underline that there are strong correlations between astrophysical, cosmological and modified gravity parameters, possibly leading to bias if wrong priors are assumed.