The Photon Ring in M87*
Avery E. Broderick, Dominic W. Pesce, Paul Tiede, Hung-Yi Pu, Roman, Gold, Richard Anantua, Silke Britzen, Chiara Ceccobello, Koushik Chatterjee,, Yongjun Chen, Nicholas S. Conroy, Geoffrey B. Crew, Alejandro Cruz-Osorio,, Yuzhu Cui, Sheperd S. Doeleman, Razieh Emami

TL;DR
This study reports the first measurement of the photon ring around M87* using EHT data, confirming theoretical models, supporting jet formation theories, and refining the black hole mass estimate.
Contribution
The paper provides the first observational detection of the photon ring in M87*, validating theoretical predictions and refining the black hole mass estimate with new modeling techniques.
Findings
Photon ring size remains constant over a week.
Detection of a jet-related extension consistent with black hole spin.
Refined black hole mass estimate of approximately 7.13 billion solar masses.
Abstract
We report measurements of the gravitationally lensed secondary image -- the first in an infinite series of so-called "photon rings" -- around the supermassive black hole M87* via simultaneous modeling and imaging of the 2017 Event Horizon Telescope (EHT) observations. The inferred ring size remains constant across the seven days of the 2017 EHT observing campaign and is consistent with theoretical expectations, providing clear evidence that such measurements probe spacetime and a striking confirmation of the models underlying the first set of EHT results. The residual diffuse emission evolves on timescales comparable to one week. We are able to detect with high significance a southwestern extension consistent with that expected from the base of a jet that is rapidly rotating in the clockwise direction. This result adds further support to the identification of the jet in M87* with a…
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