Rotation in Event Horizon Telescope Movies
Abstract
The Event Horizon Telescope (EHT) has produced images of M87* and Sagittarius A*, and will soon produce time sequences of images, or movies. In anticipation of this, we describe a technique to measure the rotation rate, or pattern speed , from movies using an autocorrelation technique. We validate the technique on Gaussian random field models with a known rotation rate and apply it to a library of synthetic images of Sgr A* based on general relativistic magnetohydrodynamics simulations. We predict that EHT movies will have per , which is of order of the Keplerian orbital frequency in the emitting region. We can plausibly attribute the slow rotation seen in our models to the pattern speed of inward-propagating spiral shocks. We also find that depends strongly on inclination. Application of this technique will enable us to compare future EHT movies with the clockwise rotation of Sgr A* seen in near-infrared flares by GRAVITY. Pattern speed analysis of future EHT observations of M87* and Sgr A* may also provide novel constraints on black hole inclination and spin, as well as an independent measurement of black hole mass.
Keywords
Cite
@article{arxiv.2304.03826,
title = {Rotation in Event Horizon Telescope Movies},
author = {Nicholas S. Conroy and Michi Bauböck and Vedant Dhruv and Daeyoung Lee and Avery E. Broderick and Chi-kwan Chan and Boris Georgiev and Abhishek V. Joshi and Ben Prather and Charles F. Gammie},
journal= {arXiv preprint arXiv:2304.03826},
year = {2023}
}