论文标题
超级云的光子环星谱
Photon Ring Astrometry for Superradiant Clouds
论文作者
论文摘要
由旋转黑洞的旋转能量的超级提取产生的引力原子可以显着高于暗物质的能量密度,将黑洞变成强大的潜在探测器,用于超轻玻色子。这些结构是通过相干振荡玻色子形成的,玻色子诱导振荡度量扰动偏转光子大地测量学通过其内部。可以在临界结合的光子轨道附近进一步扩增附近的大地测量学的偏差。我们讨论使用事件范围望远镜及其下一代升级使用光子环自相关检测这种挠度的前景,与先前的约束相比,该升级可以探测云质量参数空间的大型未探索区域。
Gravitational atoms produced from the superradiant extraction of rotational energy of spinning black holes can reach energy densities significantly higher than that of dark matter, turning black holes into powerful potential detectors for ultralight bosons. These structures are formed by coherently oscillating bosons, which induce oscillating metric perturbations deflecting photon geodesics passing through their interior. The deviation of nearby geodesics can be further amplified near critical bound photon orbits. We discuss the prospect of detecting this deflection using photon ring autocorrelations with the Event Horizon Telescope and its next-generation upgrade, which can probe a large unexplored region of the cloud mass parameter space when compared with previous constraints.