论文标题

射手座的the Horizo​​n Horizo​​n Temacope图像a $^*$的重力理论和基本物理学的地平线测试

Horizon-scale tests of gravity theories and fundamental physics from the Event Horizon Telescope image of Sagittarius A$^*$

论文作者

Vagnozzi, Sunny, Roy, Rittick, Tsai, Yu-Dai, Visinelli, Luca, Afrin, Misba, Allahyari, Alireza, Bambhaniya, Parth, Dey, Dipanjan, Ghosh, Sushant G., Joshi, Pankaj S., Jusufi, Kimet, Khodadi, Mohsen, Walia, Rahul Kumar, Övgün, Ali, Bambi, Cosimo

论文摘要

黑洞(BHS)及其阴影的地平线尺度图像打开了一个前所未有的窗口,以测试强场状态中的重力和基本物理。 We consider a wide range of well-motivated deviations from classical General Relativity (GR) BH solutions, and constrain them using the Event Horizo​​n Telescope (EHT) observations of Sagittarius A$^*$ (Sgr A$^*$), connecting the size of the bright ring of emission to that of the underlying BH shadow and exploiting high-precision measurements of Sgr A$^*$'s mass-to-distance 比率。我们考虑的场景以及我们约束的基本参数包括各种常规BHS,弦乐启发的空间时间,违反其他领域驱动的无毛定理的行为,重力替代理论,新颖的基本物理框架以及BH模仿者以及包括良好动机的蠕虫孔和裸体的单次空间效果。我们证明,SGR A $^*$的EHT图像在模型上尤其严格地预测了比给定质量的Schwarzschild BH大的阴影大小,在某些情况下,其限制超过了宇宙学。我们的结果是从Sgr A $^*$的阴影中对基本物理的首批测试之一,尽管后者似乎与GR的预测非常吻合,但我们已经表明,包括BH Mimickers在内的许多有动力的替代方案远未被排除在外。

Horizon-scale images of black holes (BHs) and their shadows have opened an unprecedented window onto tests of gravity and fundamental physics in the strong-field regime. We consider a wide range of well-motivated deviations from classical General Relativity (GR) BH solutions, and constrain them using the Event Horizon Telescope (EHT) observations of Sagittarius A$^*$ (Sgr A$^*$), connecting the size of the bright ring of emission to that of the underlying BH shadow and exploiting high-precision measurements of Sgr A$^*$'s mass-to-distance ratio. The scenarios we consider, and whose fundamental parameters we constrain, include various regular BHs, string-inspired space-times, violations of the no-hair theorem driven by additional fields, alternative theories of gravity, novel fundamental physics frameworks, and BH mimickers including well-motivated wormhole and naked singularity space-times. We demonstrate that the EHT image of Sgr A$^*$ places particularly stringent constraints on models predicting a shadow size larger than that of a Schwarzschild BH of a given mass, with the resulting limits in some cases surpassing cosmological ones. Our results are among the first tests of fundamental physics from the shadow of Sgr A$^*$ and, while the latter appears to be in excellent agreement with the predictions of GR, we have shown that a number of well motivated alternative scenarios, including BH mimickers, are far from being ruled out at present.

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