Black Hole Polarimetry I: A Signature of Electromagnetic Energy Extraction
Andrew Chael, Alexandru Lupsasca, George N. Wong, Eliot Quataert

TL;DR
This paper proposes a polarimetric observable, the phase of the second azimuthal Fourier mode of linear polarization, as a direct probe of electromagnetic energy extraction from a black hole, with applications to EHT observations of M87*.
Contribution
It introduces a new polarimetric measurement, the phase 2, which directly indicates the sign of electromagnetic energy flux near a black hole.
Findings
Data from 2017 EHT observations are consistent with electromagnetic energy outflow.
Future multi-frequency observations will improve measurements and test energy extraction.
The phase 2 can determine the direction of electromagnetic energy flow.
Abstract
In 1977, Blandford and Znajek showed that the electromagnetic field surrounding a rotating black hole can harvest its spin energy and use it to power a collimated astrophysical jet, such as the one launched from the center of the elliptical galaxy M87. Today, interferometric observations with the Event Horizon Telescope (EHT) are delivering high-resolution, event-horizon-scale, polarimetric images of the supermassive black hole M87* at the jet launching point. These polarimetric images offer an unprecedented window into the electromagnetic field structure around a black hole. In this paper, we show that a simple polarimetric observable -- the phase of the second azimuthal Fourier mode of the linear polarization in a near-horizon image -- depends on the sign of the electromagnetic energy flux and therefore provides a direct probe of black hole energy extraction. In…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astrophysics and Cosmic Phenomena · Pulsars and Gravitational Waves Research
