On the connection of the apparent proper motion and the VLBI structure of compact radio sources
arXiv:1103.3963 · doi:10.1088/0004-6256/141/6/178
Abstract
Many of the compact extragalactic radio sources that are used as fiducial points to define the celestial reference frame are known to have proper motions detectable with long-term geodetic/astrometric Very Long Baseline Interferometry (VLBI) measurements. These changes can be as high as several hundred micro-arcseconds per year for certain objects. When imaged with VLBI at milli-arcsecond (mas) angular resolution, these sources (radio-loud active galactic nuclei) typically show structures dominated by a compact, often unresolved "core" and a one-sided "jet". The positional instability of compact radio sources is believed to be connected with changes in their brightness distribution structure. For the first time, we test this assumption in a statistical sense on a large sample, not only for individual objects. We investigate a sample of 62 radio sources for which reliable long-term time series of astrometric positions as well as detailed 8-GHz VLBI brightness distribution models are available. We compare the characteristic direction of their extended jet structure and the direction of their apparent proper motion. We present our data and analysis method, and conclude that there is indeed a correlation between the two characteristic directions. However, there are cases where the ~1-10-mas scale VLBI jet directions are significantly misaligned with respect to the apparent proper motion direction.
14 pages, 3 figures, 1 table. Accepted for publication in the Astronomical Journal
References in corpus (8)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Opacity in compact extragalactic radio sources and its effect on astrophysical and astrometric studies
- A Global 86GHz VLBI Survey of Compact Radio Sources
- MOJAVE: Monitoring of Jets in AGN with VLBA Experiments. VII. Blazar Jet Acceleration
- VLBI measurement of the secular aberration drift
- Relativistic Jets in The Radio Reference Frame Image Database I: Apparent Speeds from the First Five Years of Data
- Effect of asymmetry of the radio source distribution on the apparent proper motion kinematic analysis
- Secular Aberration Drift and IAU Definition of ICRS
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