论文标题
GW190521的动力形成场景和DECIHERTZ重力波天文学的前景与GW190521类似于二进制
Dynamical Formation Scenarios for GW190521 and Prospects for Decihertz Gravitational-Wave Astronomy with GW190521-Like Binaries
论文作者
论文摘要
GW190521的重力波(GW)检测为黑洞的质量分布和天体物理形成通道的新约束提供了新的见解。由于GW190521的独立主张具有明显的合并前偏心率,我们研究了动态形成的类似GW190521样二进制物的含义。如果激光干涉仪空间天线(LISA)也将对GW190521样二进制物敏感,如果它们是从孤立的地层通道中圆形的。但是,我们证明了GW190521的二进制文件,它们可以动态地跳过Lisa频段。为此,我们模拟了通过牛顿后二进制散射动态形成的GW190521类似物。从这些散射实验中,我们发现GW190521样的二进制文件可能会进入具有显着偏心率的Ligo-Virgo带,尽管最近的研究表明,尽管远低于偏见的偏心率$ e _ {\ rm 10Hz} \ lyssim 0.7 $。偏心的GW190521样二进制物进一步激发了Decihertz GW天文台的天体物理学案例,例如中带原子 - 原子重力波的千尺度版本,MAGIS(MAGIS)。与单独使用Ligo-Virgo相比,具有这种DECIHERTZ GW检测器的GW190521样二进制物的合并前观察将能够将类似GW190521的二进制物的偏心限制在更高的精度上。这些偏心限制还将为GW190521样二进制物形成的可能环境提供更多见解。
The gravitational-wave (GW) detection of GW190521 has provided new insights on the mass distribution of black holes and new constraints for astrophysical formation channels. With independent claims of GW190521 having significant pre-merger eccentricity, we investigate what this implies for GW190521-like binaries that form dynamically. The Laser Interferometer Space Antenna (LISA) will also be sensitive to GW190521-like binaries if they are circular from an isolated formation channel. We show, however, that GW190521-like binaries that form dynamically may skip the LISA band entirely. To this end, we simulate GW190521 analogues that dynamically form via post-Newtonian binary-single scattering. From these scattering experiments, we find that GW190521-like binaries may enter the LIGO-Virgo band with significant eccentricity as suggested by recent studies, though well below an eccentricity of $e_{\rm 10Hz} \lesssim 0.7$. Eccentric GW190521-like binaries further motivate the astrophysical science case for a decihertz GW observatory, such as the kilometer-scale version of the Midband Atomic Gravitational-wave Interferometric Sensor (MAGIS). Pre-merger observations of GW190521-like binaries with such a decihertz GW detector would be able to constrain the eccentricity of GW190521-like binaries to greater precision than with just LIGO-Virgo alone. These eccentricity constraints would also provide additional insights into the possible environments that GW190521-like binaries form in.