物理
二元黑洞
布拉查
天体物理学
超大质量黑洞
黑洞(网络)
引力波
天文
可见的
广义相对论
理论物理学
银河系
量子力学
链路状态路由协议
路由协议
布线(电子设计自动化)
计算机科学
计算机网络
伽马射线
作者
Lankeswar Dey,A. Gopakumar,M. J. Valtonen,S. Zoła,Abhimanyu Susobhanan,R. Hudec,Pauli Pihajoki,T. Pursimo,A. Berdyugin,V. Piirola,S. Ciprini,K. Nilsson,Helen Jermak,M. Kidger,S. Komossa
出处
期刊:Universe
[Multidisciplinary Digital Publishing Institute]
日期:2019-05-08
卷期号:5 (5): 108-108
被引量:42
标识
DOI:10.3390/universe5050108
摘要
The bright blazar OJ 287 is the best-known candidate for hosting a nanohertz gravitational wave (GW) emitting supermassive binary black hole (SMBBH) in the present observable universe. The binary black hole (BBH) central engine model, proposed by Lehto and Valtonen in 1996, was influenced by the two distinct periodicities inferred from the optical light curve of OJ 287. The current improved model employs an accurate general relativistic description to track the trajectory of the secondary black hole (BH) which is crucial to predict the inherent impact flares of OJ 287. The successful observations of three predicted impact flares open up the possibility of using this BBH system to test general relativity in a hitherto unexplored strong field regime. Additionally, we briefly describe an ongoing effort to interpret observations of OJ 287 in a Bayesian framework.
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