首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >THE EFFICIENCY OF GRAVITATIONAL BREMSSTRAHLUNG PRODUCTION IN THE COLLISION OF TWO SCHWARZSCHILD BLACK HOLES
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THE EFFICIENCY OF GRAVITATIONAL BREMSSTRAHLUNG PRODUCTION IN THE COLLISION OF TWO SCHWARZSCHILD BLACK HOLES

机译:两种黑森州施瓦茨级黑洞碰撞过程中重力成岩作用的产生效率

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摘要

In this paper, we examine the efficiency of gravitational bremsstrahlung production in the process of head-on collision of two boosted Schwarzschild black holes. We construct initial data for the characteristic initial value problem in Robinson-Trautman space-times, which represent two instantaneously stationary Schwarzschild black holes in motion toward each other with the same velocity. The Robinson-Trautman equation is integrated for these initial data using a numerical code based on the Galerkin method. The resulting final configuration is a boosted black hole with Bondi mass greater than the sum of the individual masses of the individual initial black holes. Two relevant aspects of the process are presented. The first relates the efficiency Delta of the energy extraction by gravitational wave emission to the mass of the final black hole. This relation is fitted by a distribution function of nonextensive thermostatistics with entropic parameter q similar or equal to 1/2; the result extends and validates analysis based on the linearized theory of gravitational wave emission. The second aspect is a typical bremsstrahlung angular pattern in the early period of emission at the wave zone, a consequence of the deceleration of the black holes as they coalesce; this pattern evolves to a quadrupole form for later times.
机译:在本文中,我们研究了两个增强的Schwarzschild黑洞正面碰撞过程中重力致辐射产生的效率。我们为Robinson-Trautman时空中的特征性初值问题构造初始数据,该数据代表两个瞬时静止的Schwarzschild黑洞,它们以相同的速度彼此相对运动。使用基于Galerkin方法的数字代码对这些初始数据集成Robinson-Trautman方程。最终的最终配置是增强的黑洞,其邦迪质量大于各个初始黑洞的各个质量之和。介绍了该过程的两个相关方面。首先将重力波发射的能量提取效率Delta与最终黑洞的质量联系起来。该关系由熵参数为q等于或等于1/2的非广义温度统计分布函数拟合。结果扩展并验证了基于重力波发射线性化理论的分析。第二个方面是在波区发射早期的典型致辐射角模式,这是黑洞聚结时减速的结果。这种模式后来演变为四极形式。

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