Imaging the Supermassive Black Hole Shadow and Jet Base of M87 with the Event Horizon Telescope
arXiv:1404.7095 · doi:10.1088/0004-637X/788/2/120
Abstract
The Event Horizon Telescope (EHT) is a project to assemble a Very Long Baseline Interferometry (VLBI) network of mm wavelength dishes that can resolve strong field General Relativistic signatures near a supermassive black hole. As planned, the EHT will include enough dishes to enable imaging of the predicted black hole "shadow", a feature caused by severe light bending at the black hole boundary. The center of M87, a giant elliptical galaxy, presents one of the most interesting EHT targets as it exhibits a relativistic jet, offering the additional possibility of studying jet genesis on Schwarzschild radius scales. Fully relativistic models of the M87 jet that fit all existing observational constraints now allow horizon-scale images to be generated. We perform realistic VLBI simulations of M87 model images to examine detectability of the black shadow with the EHT, focusing on a sequence of model images with a changing jet mass load radius. When the jet is launched close to the black hole, the shadow is clearly visible both at 230 and 345 GHz. The EHT array with a resolution of 20-30as resolution (2-4 Schwarzschild radii) is able to image this feature independent of any theoretical models and we show that imaging methods used to process data from optical interferometers are applicable and effective for EHT data sets. We demonstrate that the EHT is also capable of tracing real-time structural changes on a few Schwarzschild radii scales, such as those implicated by VHE flaring activity of M87. While inclusion of ALMA in the EHT is critical for shadow imaging, generally the array is robust against loss of a station.
10 pages, 7 figures, accepted for publication in ApJ
References in corpus (7)
- Event-horizon-scale structure in the supermassive black hole candidate at the Galactic Centre
- Jet Launching Structure Resolved Near the Supermassive Black Hole in M87
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Sparsity Averaging Reweighted Analysis (SARA): a novel algorithm for radio-interferometric imaging
- Monte-Carlo Imaging for Optical Interferometry
- Aperture Synthesis Observations of the Nearby Spiral NGC 6503: Modeling the Thin and Thick HI Disks
- Optimal Image Reconstruction in Radio Interferometry
Cited by in corpus (45)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First M87 Event Horizon Telescope Results. II. Array and Instrumentation
- Light rings as observational evidence for event horizons: long-lived modes, ergoregions and nonlinear instabilities of ultracompact objects
- Magnetically charged black holes from non-linear electrodynamics and the Event Horizon Telescope
- Black holes as particle detectors: evolution of superradiant instabilities
- Chaotic lensing around boson stars and Kerr black holes with scalar hair
- Imaging the Schwarzschild-radius-scale Structure of M87 with the Event Horizon Telescope using Sparse Modeling
- 230 GHz VLBI observations of M87: event-horizon-scale structure at the enhanced very-high-energy -ray state in 2012
- Lensing and dynamics of ultra-compact bosonic stars
- Super-resolution Full Polarimetric Imaging for Radio Interferometry with Sparse Modeling
- Faraday rotation in the jet of M87 inside the Bondi radius: indication of winds from hot accretion flows confining the relativistic jet
- Frankenstein: Protoplanetary disc brightness profile reconstruction at sub-beam resolution with a rapid Gaussian process
- Imaging an Event Horizon: Mitigation of Scattering Toward Sagittarius A*
- Testing General Relativity with Accretion-Flow Imaging of Sgr A*
- The Event Horizon Telescope: exploring strong gravity and accretion physics
- Dynamical Imaging with Interferometry
- Magnetization degree at the jet base of M87 derived from the event horizon telescope data: Testing magnetically driven jet paradigm
- Thermal Image and Phase Transitions of Charged AdS Black Holes using Shadow Analysis
- Cosmic Ray Origins: An Introduction
- Absorption of electromagnetic and gravitational waves by Kerr black holes: Shadows, superradiance and the spin-helicity effect
- The shadow of M87* black hole within rational nonlinear electrodynamics
- Constraint on the black-hole spin of M87 from the accretion-jet model
- GRMHD Simulations and Modeling for Jet Formation and Acceleration Region in AGNs
- Black Hole Shadows in M-theory Scenarios
- Using space-VLBI to probe gravity around Sgr A*
- The Galactic Center as a laboratory for theories of gravity and dark matter
- Black hole parameter estimation with synthetic Very Long Baseline Interferometry data from the ground and from space
- Probing spacetime and accretion model for the Galactic Center: Comparison of Kerr and dilaton black hole shadows
- Relative Astrometry of Compact Flaring Structures in Sgr A* with Polarimetric VLBI
- An accretion-jet model for M87: interpreting the spectral energy distribution and Faraday rotation measure
- MeqSilhouette : A mm-VLBI observation and signal corruption simulator
- Curious case of gravitational lensing by binary black holes: a tale of two photon spheres, new relativistic images and caustics
- Observable Emission Features of Black Hole GRMHD Jets on Event Horizon Scales
- Frequency- and polarization-dependent lensing of gravitational waves in strong gravitational fields
- MeqSilhouette v2: Spectrally-resolved polarimetric synthetic data generation for the Event Horizon Telescope
- Shadow and weak deflection angle of a black hole in nonlocal gravity
- Event-horizon-scale Imaging of M87* under Different Assumptions via Deep Generative Image Priors
- Motion of particles around a magnetically charged Euler-Heisenberg black hole with scalar hair and the Event Horizon Telescope
- Probing the Spacetime Around Supermassive Black Holes with Ejected Plasma Blobs
- Matter density distribution of general relativistic highly magnetized jets driven by black holes
- Configuration of the global magnetic field in AGN parsec-scale jets
- Neural Network Astronomy as a New Tool for Observing Bright and Compact Objects
- Model Predictions of the Results of Interferometric Observations for Stars under Conditions of Strong Gravitational Scattering by Black Holes and Wormholes
- Resolving the inner jet of PKS 1749+096 with super-resolution VLBA images at 7 mm
- Investigating the Disk-Jet Structure in M87 through Flux Separation in the Linear and Circular Polarization Images