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Numerical simulations of single and binary black holes in scalar-tensor theories: Circumventing the no-hair theorem

机译:标量张量理论中单个和二进制黑洞的数值模拟:规避无毛定理

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摘要

Scalar-tensor theories are a compelling alternative to general relativity and one of the most accepted extensions of Einstein's theory. Black holes in these theories have no hair, but could grow "wigs" supported by time-dependent boundary conditions or spatial gradients. Time-dependent or spatially varying fields lead in general to nontrivial black hole dynamics, with potentially interesting experimental consequences. We carry out a numerical investigation of the dynamics of single and binary black holes in the presence of scalar fields. In particular we study gravitational and scalar radiation from black-hole binaries in a constant scalar-field gradient, and we compare our numerical findings to analytical models. In the single black hole case we find that, after a short transient, the scalar field relaxes to static configurations, in agreement with perturbative calculations. Furthermore we predict analytically (and verify numerically) that accelerated black holes in a scalar-field gradient emit scalar radiation. For a quasicircular black-hole binary, our analytical and numerical calculations show that the dominant component of the scalar radiation is emitted at twice the binary's orbital frequency.
机译:标量张量理论是广义相对论的一种有说服力的替代方法,也是爱因斯坦理论最广为接受的扩展之一。这些理论中的黑洞没有毛发,但在依赖于时间的边界条件或空间梯度的支持下可能会长出“假发”。时间相关或空间变化的场通常会导致非平凡的黑洞动力学,并可能带来有趣的实验结果。我们对存在标量场的单个和二进制黑洞的动力学进行了数值研究。特别是,我们以恒定的标量场梯度研究了来自黑洞双星的重力和标量辐射,并将我们的数值发现与分析模型进行了比较。在单个黑洞情况下,我们发现,经过短暂的瞬变后,标量场松弛为静态构型,这与扰动计算相符。此外,我们通过分析(并进行数值验证)预测标量场梯度中的加速黑洞会发出标量辐射。对于准圆形黑洞双星,我们的分析和数值计算表明,标量辐射的主要成分以双星的轨道频率的两倍发射。

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