Multi-frequency VLBI Observations of the M 84 Inner Jet/Counterjet
arXiv:2211.08602 · doi:10.3847/1538-4357/aca27b
Abstract
Observational studies of inner-most regions of the edge-on jets in nearby active galactic nuclei (AGN) are crucial to understand their kinematics and morphology. For the inner jet of the nearby low luminosity AGN in M 84, we present new high-sensitivity observations with very long baseline interferometry since 2019, as well as archival Very Long Baseline Array observations in 2014. We find that the compact core in M 84 has an inverted-to-flat spectrum from 1.5 to 88 GHz. Based on the turnover frequency of GHz in the spectrum, we estimated a magnetic field strength of 1-10mG and an electron number density of in the core region. Three inner jet components within mas from the core are identified and traced in the images at 22 GHz, whose apparent speeds are 0.11 c, 0.27 c, and 0.32 c, respectively. We calculate the viewing angle of degree for the inner jet based on the proper motion and the flux ratio of jet-to-counterjet. A propagating sinusoidal model with a wavelength of mas is used to fit the helical morphology of the jet extended to 20 mas ( Schwarzschild Radii).
9 pages, 5 figures, accepted by the ApJ
References in corpus (9)
- Kinematics of Parsec-Scale Jets of Gamma-Ray Blazars at 43~GHz within the VLBA-BU-BLAZAR Program
- Event Horizon Telescope observations of the jet launching and collimation in Centaurus A
- MOJAVE: XVIII. Kinematics and Inner Jet Evolution of Bright Radio-Loud Active Galaxies
- Evaluation of New Submillimeter VLBI Sites for the Event Horizon Telescope
- Simulations of imaging the event horizon of Sagittarius A* from space
- Asymmetric jet production in the Active Galactic Nucleus of NGC1052
- ALMA Observations of Circumnuclear Disks in Early Type Galaxies: 12CO(2-1) and Continuum Properties
- A New Hardware Correlator in Korea: Performance Evaluation using KVN observations
- Infrared properties of blazars: putting the GASP-WEBT sources into context