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

Leyde, Konstantin, Mastrogiovanni, Simone, Steer, Danièle A., Chassande-Mottin, Eric, Karathanasis, Christos

论文摘要

引力波(GW)标准警笛是可以测量宇宙参数的良好探针,并且与其他探针互补,例如宇宙微波背景或超新星标准蜡烛。在这里,我们专注于深色GW警报器,特别是只有GW数据的二进制黑洞(BBH)。我们的方法依赖于BBH分布的源框架质量模型的假设,我们考虑了四个代表到目前为止观察到的BBH种群的模型。除了推断宇宙学和质量模型参数外,我们还使用深色警报器来测试修饰的重力理论。这些理论通常会在宇宙学量表上预测不同的GW传播方程,从而导致不同的GW发光度距离,在某些情况下可以通过变量参数$ξ_0$和$ n $参数。一般相对(GR)对应于$ξ_0= 1 $。我们对管理质量,红移,表征宇宙学的变量以及改良的GW光度距离的人口参数进行联合估计。我们使用第三LVK观察运行中的数据 - 对于四个质量模型,对于三个SNR切割,GR一直是描述所有观察到的BBH GW信号的首选模型。此外,所有修饰的重力参数都具有与90%置信区间GR预测的值兼容的后期。我们表明,宇宙学,天体物理和修饰的重力参数之间存在很强的相关性。如果Gr是正确的重力理论,并且在宇宙学参数上假设狭窄的先验,我们预测了修改后的重力参数$ξ_0$ 51%的51%$ \ sim 90 $检测的不确定性,以O4型敏感性,$ξ_0$ 20%,并具有20%的$ 20 $ 20 $ \ sim 400 $ \ sim 400 $ $ $ \ sim 400 $检测。我们还考虑这些预测如何取决于BBH人群的当前不确定性。

Gravitational wave (GW) standard sirens are well-established probes with which one can measure cosmological parameters, and are complementary to other probes like the cosmic microwave background or supernovae standard candles. Here we focus on dark GW sirens, specifically binary black holes (BBHs) for which there is only GW data. Our approach relies on the assumption of a source frame mass model for the BBH distribution, and we consider four models that are representative of the BBH population observed so far. In addition to inferring cosmological and mass model parameters, we use dark sirens to test modified gravity theories. These theories often predict different GW propagation equations on cosmological scales, leading to a different GW luminosity distance which in some cases can be parametrized by variables $Ξ_0$ and $n$. General relativity (GR) corresponds to $Ξ_0= 1$. We perform a joint estimate of the population parameters governing mass, redshift, the variables characterizing the cosmology, and the modified GW luminosity distance. We use data from the third LVK observation run and find - for the four mass models and for three SNR cuts - that GR is consistently the preferred model to describe all observed BBH GW signals. Furthermore, all modified gravity parameters have posteriors that are compatible with the values predicted by GR at the 90% confidence interval. We show that there are strong correlations between cosmological, astrophysical and modified gravity parameters. If GR is the correct theory of gravity, and assuming narrow priors on the cosmological parameters, we forecast an uncertainty of the modified gravity parameter $Ξ_0$ of 51% with $\sim 90$ detections at O4-like sensitivities, and $Ξ_0$ of 20% with an additional $\sim 400$ detections at O5-like sensitivity. We also consider how these forecasts depend on the current uncertainties of the BBH population.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源