The Variability of Sagittarius A* at Centimeter Wavelengths
arXiv:astro-ph/0402543 · doi:10.1086/420711
Abstract
We present the results of a 3.3-year project to monitor the flux density of Sagittarius A* at 2.0, 1.3, and 0.7 cm with the VLA. The fully calibrated light curves for Sgr A* at all three wavelengths are presented. Typical errors in the flux density are 6.1%, 6.2%, and 9.2% at 2.0, 1.3, and 0.7 cm, respectively. There is preliminary evidence for a bimodal distribution of flux densities, which may indicate the existence of two distinct states of accretion onto the supermassive black hole. At 1.3 and 0.7 cm, there is a tail in the distribution towards high flux densities. Significant variability is detected at all three wavelengths, with the largest amplitude variations occurring at 0.7 cm. The rms deviation of the flux density of Sgr A* is 0.13, 0.16, and 0.21 Jy at 2.0, 1.3, and 0.7 cm, respectively. During much of this monitoring campaign, Sgr A* appeared to be relatively quiescent compared to results from previous campaigns. At no point during the monitoring campaign did the flux density of Sgr A* more than double its mean value. The mean spectral index of Sgr A* is alpha=0.20+/-0.01, with a standard deviation of 0.14. The spectral index appears to depend linearly on the observed flux density at 0.7 cm with a steeper index observed during outbursts. This correlation is consistent with the expectation for outbursts that are self-absorbed at wavelengths of 0.7 cm or longer and inconsistent with the effects of simple models for interstellar scintillation. Much of the variability of Sgr A*, including possible time lags between flux density changes at the different wavelengths, appears to occur on time scales less than the time resolution of our observations (8 days). Future observations should focus on the evolution of the flux density on these time scales.
16 pages, 10 figures, accepted for publication in AJ
References in corpus (3)
Cited by in corpus (54)
- The Galactic Center Massive Black Hole and Nuclear Star Cluster
- First Sagittarius A* Event Horizon Telescope Results. VI: Testing the Black Hole Metric
- First Sagittarius A* Event Horizon Telescope Results. II. EHT and Multi-wavelength Observations, Data Processing, and Calibration
- An X-ray, IR, and Submillimeter Flare of Sagittarius A*
- Polarimetry of near-infrared flares from Sagittarius A*
- Flaring Activity of Sgr A* at 43 and 22 GHz: Evidence for Expanding Hot Plasma
- Sagittarius A* Accretion Flow and Black Hole Parameters from General Relativistic Dynamical and Polarized Radiative Modeling
- A Multi-Wavelength Study of Sgr A*: The Role of Near-IR Flares in Production of X-ray, Soft -ray and Sub-millimeter Emission
- A Constant Spectral Index for Sagittarius A* During Infrared/X-ray Intensity Variations
- The role of electron heating physics in images and variability of the Galactic Centre black hole Sagittarius A*
- Sgr A* and General Relativity
- A powerful flare from Sgr A* confirms the synchrotron nature of the X-ray emission
- The Flare Activity of SgrA*; New Coordinated mm to X-Ray Observations
- Radio and Millimeter Monitoring of Sgr A*: Spectrum, Variability, and Constraints on the G2 Encounter
- Variability Timescale and Spectral Index of Sgr A* in the Near Infrared: Approximate Bayesian Computation Analysis of the Variability of the Closest Supermassive Black Hole
- Polarized NIR and X-ray Flares from SgrA*
- Intra-day Variability of Sagittarius A* at 3 Millimeters
- Sgr A* flares: tidal disruption of asteroids and planets?
- Galactic Center Research: Manifestations of the Central Black Hole
- Jet-lag in Sgr A*: What size and timing measurements tell us about the central black hole in the Milky Way
- The Proper Motion of the Galactic Center Pulsar Relative to Sagittarius A*
- Is there a Supermassive Black Hole at the Center of the Milky Way?
- Synchrotron Radiation From Radiatively Inefficient Accretion Flow Simulations: Applications to Sgr A*
- Concurrent X-ray, near-infrared, sub-millimeter, and GeV gamma-ray observations of Sgr A*
- Simultaneous Multi-Wavelength Observations of Sgr A*
- The Intrinsic Two-Dimensional Size of Sagittarius A*
- Multiwavelength VLBI observations of Sagittarius A*
- Modeling mm- to X-ray flare emission from SgrA*
- ALMA Observations of the Terahertz Spectrum of Sagittarius A*
- Understanding the Radio Variability of Sgr A*
- An Inverse Compton Scattering Origin of X-ray Flares from Sgr A*
- Coordinated NIR/mm observations of flare emission from Sagittarius A*
- Polarized Emission of Sagittarius A*
- A time-dependent jet model for the emission from Sagittarius A*
- Radio Synchrotron Emission from the Bow Shock of G2
- The millimetre variability of M81* -- Multi-epoch dual frequency mm-observations of the nucleus of M81
- The variability of Sagittarius A* at 3 millimeter
- Multi-Epoch VERA Observations of Sagittarius A*: I. Images and Structural Variability
- Effect of an isotropic outflow from the Galactic centre on the bow-shock evolution along the orbit
- AzTEC Survey of the Central Molecular Zone: Data Reduction, Analysis, and Preliminary Results
- Soft gamma-ray constraints on a bright flare from the Galactic Center supermassive black hole
- No Microwave Flare of Sagittarius A* around the G2 Periastron Passing
- Monitoring the Galactic Centre with Australia Telescope Compact Array
- Accretion models of Sgr A*
- Coordinated multi-wavelength observations of Sgr A*
- Detection of a 20 minute time lag observed from Sgr A* between 8 and 10 GHz with the VLA
- Detecting Stars at the Galactic Centre via Synchrotron Emission
- High-resolution Millimeter-VLBI Imaging of Sgr A*
- Very Large Array multi-band monitoring observations of M 31*
- Long-term monitoring of Sgr A* at 7 mm with VERA and KaVA
- Coordinated mm/sub-mm observations of Sagittarius A* in May 2007
- The Jet in the Galactic Center: An Ideal Laboratory for Magnetohydrodynamics and General Relativity
- SgrA* emission at 7mm: variability and periodicity
- Variability of Sagittarius A* at 3 GHz on minute-scale with MeerKAT