Milliarcsecond Observations of Microarcsecond AGN

Author/Creator ORCID

Date

2008

Department

Program

Citation of Original Publication

Lazio, J.; Ojha, R.; Fey, A. L.; Kedziora-Chudczer, L.; Cordes, J. M.; Jauncey, D. L.; Lovell, J. E.; Milliarcsecond Observations of Microarcsecond AGN; Frontiers of Astrophysics: A Celebration of NRAO’s 50 th Anniversary (2008); http://aspbooks.org/custom/publications/paper/395-0372.html

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Public Domain Mark 1.0
This work was written as part of one of the author's official duties as an Employee of the United States Government and is therefore a work of the United States Government. In accordance with 17 U.S.C. 105, no copyright protection is available for such works under U.S. Law

Subjects

Abstract

We report on a multi-wavelength program to examine the core structure of extremely compact AGN and to search for indications of an intergalactic medium. We have conducted Very Long Baseline Array (VLBA) observations of 58 compact extragalactic sources. Approximately 75% of these objects display interstellar scintillation, in the form of intraday variability, indicative of extremely compact structure (∼ 10 μarcsec). We confirm earlier, single-wavelength observations that found scintillating sources to be more core-dominated than non-scintillating sources [Ojha et al. (2004: ApJ, 614, 607)], consistent with expectations from their scintillation. However, scintillating and non-scintillating sources display comparable levels of radio-wave scattering (∼ 2 mas at 1 GHz). We also have redshifts for 63% of the sources and find no trend of scattering strength with redshift. We use these observations to place limits on the level of turbulence that the ionized intergalactic medium can support. Work in progress includes expanding the number of sources for which redshifts have been measured. The VLBA is a facility instrument of the National Radio Astronomy Observatory, which is operated by Associated Universities, Inc. under contract from the National Science Foundation. Basic research in radio astronomy at the NRL is supported by 6.1 Base Funding.