物理
二元黑洞
黑洞(网络)
自旋转向
散射
可见的
经典力学
万有引力
耗散系统
理论物理学
白洞
量子力学
法学
二进制数
黑洞热力学
不变(物理)
红移
极端黑洞
引力红移
恒星黑洞
旋转黑洞
带电黑洞
引力波
第一定律
霍金辐射
天体物理学
重力崩塌
作者
Riccardo Gonzo,Jack L. Lewis,Adam Pound
摘要
In the last decade, the first law of binary black hole mechanics played an important unifying role in the gravitational two-body problem. More recently, binary black hole scattering and the application of high-energy physics methods have provided a new avenue into this classical problem. In this Letter, we connect these two themes by extending the first law to the case of scattering orbits. We present derivations based on classical S-matrix, Hamiltonian, and pseudo-Hamiltonian methods, the last of which allows us to include dissipative effects for the first time. Finally, a "boundary to bound" map links this first law to the traditional bound-orbit version. Through this map a little-known observable for scatter orbits, the elapsed proper time, is mapped to the Detweiler redshift for bound orbits, which is an invariant building block in gravitational waveform models.
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