论文标题
标量理论中的积聚磁盘的超级不稳定性
Superradiant instabilities by accretion disks in scalar-tensor theories
论文作者
论文摘要
我们研究引力标量调整理论中的超级不稳定性,在黑洞外部物质为引力部门的标量自由度提供了有效的质量。我们讨论了任意旋转黑洞的效果以及截短的薄和厚的积聚磁盘的现实模型(其中扰动方程不可分离),特别关注热冠状流在黑洞附近的作用。该系统定性地类似于等离子驱动的超级不稳定性的现象学。然而,我们表明,可以在标量调节理论中规避等离子驱动的超级不稳定性的障碍。我们找到了广泛的参数空间,可以在现实的情况下触发超级不稳定性,并讨论这种效果对标量调整理论的约束。特别是,我们认为,高度旋转的黑洞的存在与某些标量调整器的替代方案是黑孔的张力,例如与筛选的对称模型。
We study the superradiant instability in scalar-tensor theories of gravitation, where matter outside a black hole provides an effective mass to the scalar degree of freedom of the gravitational sector. We discuss this effect for arbitrarily spinning black holes and for realistic models of truncated thin and thick accretion disks (where the perturbation equations are nonseparable), paying particular attention to the role of hot coronal flows in the vicinity of the black hole. The system qualitatively resembles the phenomenology of plasma-driven superradiant instabilities in General Relativity. Nevertheless, we show that the obstacles hampering the efficiency of plasma-driven superradiant instabilities in General Relativity can be circumvented in scalar-tensor theories. We find a wide range of parameter space where superradiant instabilities can be triggered in realistic scenarios, and discuss the constraints on scalar-tensor theories imposed by this effect. In particular, we argue that the existence of highly spinning accreting black holes is in tension with some scalar-tensor alternatives to the dark energy, e.g. symmetron models with screening.