论文标题

通过事件范围探测二次重力

Probing Quadratic Gravity with the Event Horizon Telescope

论文作者

Daas, Jesse, Kuijpers, Kolja, Saueressig, Frank, Wondrak, Michael F., Falcke, Heino

论文摘要

二次重力构成了重力相互作用的可扰动量量子理论的典型示例。在这项工作中,我们构建了静态,球体对称和渐近平面的相关相位空间。发现Schwarzschild的几何形状嵌入了包括地平线无裸奇异点和虫洞溶液的丰富溶液空间中。典型的是,变形的溶液沿着光子球外部的Schwarzschild溶液沿着它们的相差很接近重心。然后,我们对事件范围望远镜可观察到的特征进行分析分析,包括黑洞阴影的大小以及插入物质发出的辐射。在此基础上,我们认为是阴影区域内的亮度限制了解决方案的相位空间。我们的工作构成了基于观察数据的清晰量子重力解释,构成了将黑洞类型解决方案的相空间界定的第一步。

Quadratic gravity constitutes a prototypical example of a perturbatively renormalizable quantum theory of the gravitational interactions. In this work, we construct the associated phase space of static, spherically symmetric, and asymptotically flat spacetimes. It is found that the Schwarzschild geometry is embedded in a rich solution space comprising horizonless, naked singularities and wormhole solutions. Characteristically, the deformed solutions follow the Schwarzschild solution up outside of the photon sphere while they differ substantially close to the center of gravity. We then carry out an analytic analysis of observable signatures accessible to the Event Horizon Telescope, comprising the size of the black hole shadow as well as the radiation emitted by infalling matter. On this basis, we argue that it is the brightness within the shadow region which constrains the phase space of solutions. Our work constitutes the first step towards bounding the phase space of black hole type solutions with a clear quantum gravity interpretation based on observational data.

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