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A&A 456, 97-104 (2006)
DOI: 10.1051/0004-6361:20054678
Multi-frequency VLBI observations of NRAO 530
S.-W. Feng1, 2, Z.-Q. Shen1, 3, H.-B. Cai1, 2, X. Chen1, 2, R.-S. Lu1, 2 and L. Huang1, 21 Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai 200030, PR China
e-mail: winfeng@shao.ac.cn
2 Graduate School of Chinese Academy of Sciences, Beijing 100012, PR China
3 Joint Institute for Galaxy and Cosmology, SHAO and USTC, PR China
(Received 12 December 2005 / Accepted 2 May 2006)
Abstract
We report on VLBA observations of a
-ray bright
blazar NRAO 530 at multiple frequencies (5, 8, 15, 22, 39, 43, and
45 GHz) in 1997 and 1999. These multi-epoch multi-frequency
high-resolution VLBI images exhibit a consistent core-dominated
morphology with a bending jet to the north of the core. The
quasi-simultaneous data observed at five frequencies (5, 8, 15, 22,
and 43 GHz) in February 1997 enabled us to estimate the spectra of
compact VLBI components in this highly variable source. Flat spectra
are seen in the two central components (A and B), and the most
compact component A that has the flattest spectral index at the
south end is identified as the core. Based on the synchrotron
cooling timescale argument, it is suggested that the observed
inverted spectrum of component C is caused by the free-free
absorption (FFA), although the synchrotron self-absorption (SSA)
model cannot be ruled out definitely. While the SSA probably exists
in component B, it is likely that the same FFA would produce the
spectral turnover toward component B since the fitted FFA
coefficients in both B and C components are almost the same. If so,
the projected size of such an absorbing medium is at least 25 pc.
Key words: galaxies: quasars: individual: NRAO 530 -- galaxies: jets -- radio continuum: galaxies
© ESO 2006
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