Spectral sirens cosmology from binary black holes populations with sharper mass features
基于更清晰质量特征的二元黑洞群体谱汽笛宇宙学
Spectral-sirens inference enables the extraction of cosmological parameters from gravitational-wave data alone, without electromagnetic counterparts or galaxy catalogs. We introduce new parametric mass functions for the binary black hole population built as linear combination of truncated power-laws that capture significant structure across the mass spectrum. On analysing the latest gravitational-wave transient catalog, GWTC-4.0, we show that power-laws-only population models constrain the Hubble constant to H <SUB>0</SUB> = 53.3<SUP>+14.0</SUP> <SUB>-10.8</SUB> km s<SUP>-1</SUP> Mpc<SUP>-1</SUP> at 68% confidence level. After probing the robustness of the results with respect to several modelling assumptions, we further test alternative cosmological models, establishing competitive constraints on modified gravitational-wave propagation, while bounds on the dark energy equation-of-state parameters remain uninformative. Projecting to the future O5 observing run with larger datasets at higher redshifts, we forecast substantial improvements in H <SUB>0</SUB> and modified propagation parameters. Our results highlight the strong interplay between the black hole mass distribution and inferred cosmology.
展开 ▾用截断幂律线性组合刻画 BBH 质量谱结构,纯幂律模型得到 H0=53.3+14.0-10.8 km/s/Mpc;显示质量分布与宇宙学推断存在强相互影响。
谱汽笛宇宙学长期受限于质量群体模型的选择与系统误差。本文通过更灵活的截断幂律组合质量函数,较以往纯幂律模型更完整地捕捉 BBH 质量谱特征,并在 GWTC-4.0 上给出 H0 约束、检验修正引力传播及暗能量状态方程。当前暗能量参数仍缺乏信息,但修正传播约束已具竞争力。预计 O5 运行将带来更大样本和更高红移,使 H0 与修正传播参数显著改善。后续发展方向是在群体质量模型与宇宙学推断之间建立更稳健的联合建模,以控制模型系统误差。
接收 2026-06-28 · 刊出 2026-09-04 · 收录 2026-09-14