Photon Ring Autocorrelations
arXiv:2010.03683 · doi:10.1103/PhysRevD.103.104038
Abstract
In the presence of a black hole, light sources connect to observers along multiple paths. As a result, observed brightness fluctuations must be correlated across different times and positions in black hole images. Photons that execute multiple orbits around the black hole appear near a critical curve in the observer sky, giving rise to the photon ring. In this paper, a novel observable is proposed: the two-point correlation function of intensity fluctuations on the photon ring. This correlation function is analytically computed for a Kerr black hole surrounded by stochastic equatorial emission, with source statistics motivated by simulations of a turbulent accretion flow. It is shown that this two-point function exhibits a universal, self-similar structure consisting of multiple peaks of identical shape: while the profile of each peak encodes statistical properties of fluctuations in the source, the locations and heights of the peaks are determined purely by the black hole parameters. Measuring these peaks would demonstrate the existence of the photon ring without resolving its thickness, and would provide estimates of black hole mass and spin. With regular monitoring over sufficiently long timescales, this measurement could be possible via interferometric imaging with modest improvements to the Event Horizon Telescope.
31 pages, 3 figures. v2: published version. v3: minor corrections, summarized in an appendix; conclusions essentially unchanged
References in corpus (24)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First M87 Event Horizon Telescope Results. VI. The Shadow and Mass of the Central Black Hole
- First M87 Event Horizon Telescope Results. IV. Imaging the Central Supermassive Black Hole
- First M87 Event Horizon Telescope Results. V. Physical Origin of the Asymmetric Ring
- First M87 Event Horizon Telescope Results. II. Array and Instrumentation
- First M87 Event Horizon Telescope Results. III. Data Processing and Calibration
- Event-horizon-scale structure in the supermassive black hole candidate at the Galactic Centre
- Black Hole Shadows, Photon Rings, and Lensing Rings
- Detection of the Schwarzschild precession in the orbit of the star S2 near the Galactic centre massive black hole
- The Shape of the Black Hole Photon Ring: A Precise Test of Strong-Field General Relativity
- The Shadow of a Spherically Accreting Black Hole
- Lensing by Kerr Black Holes
- Radio and Millimeter Monitoring of Sgr A*: Spectrum, Variability, and Constraints on the G2 Encounter
- On the Observable Shape of Black Hole Photon Rings
- Dynamical Imaging with Interferometry
- Decomposing the Internal Faraday Rotation of Black Hole Accretion Flows
- Spacetime Tomography Using The Event Horizon Telescope
- Black Hole Glimmer Signatures of Mass, Spin, and Inclination
- Measuring the shape of a black hole photon ring
- Maximum Observable Blueshift from Circular Equatorial Kerr Orbiters
- On the approximation of the black hole shadow with a simple polar curve
- Black hole Spin Measurement Based on Time-domain VLBI Observations of Infalling Gas Cloud
- Photon Emission from Circular Equatorial Kerr Orbiters
- Covariant Radiative Transfer for Black Hole Spacetimes
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- Horizon-scale tests of gravity theories and fundamental physics from the Event Horizon Telescope image of Sagittarius A
- Observing the Inner Shadow of a Black Hole: A Direct View of the Event Horizon
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- Key Science Goals for the Next-Generation Event Horizon Telescope
- Shadow analysis for rotating black holes in the presence of plasma for an expanding universe
- Millimeter light curves of Sagittarius A* observed during the 2017 Event Horizon Telescope campaign
- Shadows and photon rings of regular black holes and geonic horizonless compact objects
- Superradiant evolution of the shadow and photon ring of Sgr A
- Analytical study of gravitational lensing in Kerr-Newman black-bounce spacetime
- Photon ring test of the Kerr hypothesis: Variation in the ring shape
- Shape of higher-order images of equatorial emission rings around a Schwarzschild black hole: Analytical description with polar curves
- A review on analytical studies in Gravitational Lensing
- Photon rings as tests for alternative spherically symmetric geometries with thin accretion disks
- Investigating effects of dark matter on photon orbits and black hole shadows
- Holography of the Photon Ring
- Adaptive Analytical Ray Tracing of Black Hole Photon Rings
- Gravitational Lensing by Black Holes with Multiple Photon Spheres
- Prediction for the interferometric shape of the first black hole photon ring
- Photon Ring Astrometry for Superradiant Clouds
- Black Hole Photon Rings Beyond General Relativity
- Testing Gravity with Black Hole Shadow Subrings
- The Black Hole Explorer: Photon Ring Science, Detection and Shape Measurement
- Black hole bulk-cone singularities
- Constraining spherically symmetric metrics by the gap between photon rings
- Polarimetric signatures of the photon ring of a black hole that is pierced by a cosmic axion string
- Exploring Nonlinear Electrodynamics Theories: Shadows of Regular Black Holes and Horizonless Ultra-Compact Objects
- Quasinormal modes in two-photon autocorrelation and the geometric-optics approximation
- Note on fundamental physics tests from black hole imaging: Comment on "Hunting for extra dimensions in the shadow of Sagittarius A"
- Near-Horizon Polarization as a Diagnostic of Black Hole Spacetime
- Photon Emission from Circular Equatorial Kerr Orbiters
- Jets and Rings in Images of Spinning Black Holes
- New test on the Einstein equivalence principle through the photon ring of black holes
- Explanation for the absence of secondary peaks in black hole light curve autocorrelations
- Measuring Black Hole Light Echoes with Very Long Baseline Interferometry
- Measuring time delays: I. Using a flux time series that is a linear combination of time-shifted light curves
- Extreme lensing induces spectro-temporal correlations in black-hole signals
- Forward Ray Tracing and Hot Spots in Kerr Spacetime
- Spacetime Measurements with the Photon Ring
- Inferring Black Hole Spin from Interferometric Measurements of the First Photon Ring: A Geometric Approach
- Gravity versus astrophysics in black hole images and photon rings: Equatorial emissions and spherically symmetric space-times
- Observational signatures from higher-order images of moving hotspots in accretion disks
- Probing and resolving AGN disks with ultrafast photon counters
- Shadows and optical appearance of black bounces illuminated by a thin accretion disk
- Overlapping of photon rings in black hole imaging
- Photon ring autocorrelations from gravitational fluctuations around a black hole
- Auto- and cross-correlations for multiple images of corotating hotspots in accretion disks
- Classification of radial Kerr geodesic motion
- Light deflection in axially symmetric stationary spacetimes filled with a moving medium
- General relativistic radiation transport: Implications for VLBI/EHT observations of AGN discs, winds and jets
- Decoding a black hole metric from the interferometric pattern of the relativistic images of a compact source
- Extreme-Lensing Signatures Revealed by Correlations of Simulated Black-Hole Movies
- PATOKA: Simulating Electromagnetic Observables of Black Hole Accretion