Black hole Spin Measurement Based on Time-domain VLBI Observations of Infalling Gas Cloud
arXiv:1910.10713 · doi:10.3847/1538-4357/ab505b
Abstract
The black hole spacetime is described by general relativity and characterized by two quantities: the black hole mass and spin. Black hole spin measurement requires information from the vicinity of the event horizon, which is spatially resolved for the Galactic center SagittariusA* (SgrA*) and nearby radio galaxy M87 by means of very long baseline interferometry (VLBI) observations with the Event Horizon Telescope (EHT). In this paper, we simulate EHT observations for a gas cloud intermittently falling onto a black hole, and construct a method for spin measurement based on its relativistic flux variation. The light curve of the infalling gas cloud is composed of peaks formed by photons which directly reach a distant observer and by secondary ones reaching the observer after more than one rotation around the black hole. The time interval between the peaks is determined by a period of photon rotation near the photon circular orbit which uniquely depends on the spin. We perform synthetic EHT observations for SgrA* under a more realistic situation that a number of gas clouds intermittently fall towards the black hole with various initial parameters. Even for this case, the black hole spin dependence is detectable in correlated flux densities which are accurately calibrated by baselines between sites with redundant stations. The synthetic observations indicate that our methodology can be applied to EHT observations of Sgr A* since April 2017.
19 pages, 15 figures, accepted in ApJ
References in corpus (22)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- 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
- Constraining Black Hole Spin Via X-ray Spectroscopy
- Jet Launching Structure Resolved Near the Supermassive Black Hole in M87
- A new method for shadow calculations: application to parameterised axisymmetric black holes
- Apparent shape of super-spinning black holes
- An Unambiguous Detection of Faraday Rotation in Sagittarius A*
- The Submillimeter Bump in Sgr A* from Relativistic MHD Simulations
- The Power of Imaging: Constraining the Plasma Properties of GRMHD Simulations using EHT Observations of Sgr A*
- Plasma diagnostic potential of 2p4f in N -- accurate wavelengths and oscillator strengths
- 230 GHz VLBI observations of M87: event-horizon-scale structure at the enhanced very-high-energy -ray state in 2012
- Dynamical Imaging with Interferometry
- The Effects of Accretion Flow Dynamics on the Black Hole Shadow of Sagittarius A
- Spectral and Timing Properties of the Black Hole X-ray Binary H 1743-322 in the Low/hard State Studied with Suzaku
- Time Domain Filtering of Resolved Images of Sgr A*
- High-frequency quasi-periodic light variations from arc-shaped gas clouds falling to a black hole
Cited by in corpus (12)
- Lensing by Kerr Black Holes
- Key Science Goals for the Next-Generation Event Horizon Telescope
- Millimeter light curves of Sagittarius A* observed during the 2017 Event Horizon Telescope campaign
- Measuring Spin from Relative Photon Ring Sizes
- Photon Ring Astrometry for Superradiant Clouds
- Observational Appearance of a Freely-falling Star in an Asymmetric Thin-shell Wormhole
- Jets and Rings in Images of Spinning 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
- Forward Ray Tracing and Hot Spots in Kerr Spacetime
- Measuring black hole spins with x-ray reflection spectroscopy: A GRMHD outlook
- Extreme-Lensing Signatures Revealed by Correlations of Simulated Black-Hole Movies