论文标题
修饰的重力和黑洞质量间隙
Modified Gravity and the Black Hole Mass Gap
论文作者
论文摘要
我们开拓黑洞质量差距是一种强大的新工具,用于限制修饰的重力理论。这些理论预测了改变人口恒星的结构和演变的第五力,从而加剧了配对的稳定性。这导致形成较轻的天体物理黑洞,并降低质量间隙的上和下边缘。使用详细的数值模拟来探索这些效果,以得出定量预测,这些预测可以用作贝叶斯数据分析的理论输入。我们根据当前和即将到来的数据以及由于环境筛查而可能引起的并发症讨论检测策略。为了证明质量差距的约束能力,我们提出了对强度对等原理的新测试,在该测试中,我们将结果应用于对前十种Ligo/Pirgo二进制二进制黑洞合并事件的分析,以获得$ 7 \%$ $ \%$,在Baryonic Matters经历的重力常数之间与Baryonic Matters经历的重力差异,以及由黑孔(Black Holes)所经历的,$δg/gδg/g $。最近的GW190521事件是由两个黑色孔在规范的质量间隙中带有质量的黑洞,如果该事件起源于未经筛查的星系,可以通过修饰的重力来解释重力的强度通过$ \ sim30 \%$增强,或者通过$ \ sim 50 \%$ \ sim 50 \%$降低了$ \ sim 30 \%。
We pioneer the black hole mass gap as a powerful new tool for constraining modified gravity theories. These theories predict fifth forces that alter the structure and evolution of population-III stars, exacerbating the pair-instability. This results in the formation of lighter astrophysical black holes and lowers both the upper and lower edges of the mass gap. These effects are explored using detailed numerical simulations to derive quantitative predictions that can be used as theoretical inputs for Bayesian data analysis. We discuss detection strategies in light of current and upcoming data as well as complications that may arise due to environmental screening. To demonstrate the constraining power of the mass gap, we present a novel test of the strong equivalence principle where we apply our results to an analysis of the first ten LIGO/Virgo binary black hole merger events to obtain a $7\%$ bound on the relative difference between the gravitational constant experienced by baryonic matter, and that experienced by black holes, $ΔG/G$. The recent GW190521 event resulting from two black holes with masses in the canonical mass gap can be explained by modified gravity if the event originated from an unscreened galaxy where the strength of gravity is enhanced by $\sim30\%$ or reduced by $\sim 50\%$ relative to its strength in the solar system.