arXiv · astro-ph/0611614
Phase-reference VLBI Observations of the Compact Steep-Spectrum Source 3C 138
Abstract
We investigate a phase-reference VLBI observation that was conducted at 15.4 GHz by fast switching VLBA antennas between the compact steep-spectrum radio source 3C 138 and the quasar PKS 0528+134 which are about 4$^\circ$ away on the sky. By comparing the phase-reference mapping with the conventional hybrid mapping, we demonstrate the feasibility of high precision astrometric measurements for sources separated by 4$^\circ$. VLBI phase-reference mapping preserves the relative phase information, and thus provides an accurate relative position between 3C 138 and PKS 0528+134 of $Δα=-9^m46^s.531000\pm0^s.000003$ and $Δδ=3^\circ6^\prime26^{\prime\prime}.90311\pm0^{\prime\prime}.00007$ (J2000.0) in right ascension and declination, respectively. This gives an improved position of the nucleus (component A) of 3C 138 in J2000.0 to be RA=$05^h 21^m 9^s.885748$ and Dec=$16^\circ 38' 22''.05261$ under the assumption that the position of calibrator PKS 0528+134 is correct. We further made a hybrid map by performing several iterations of CLEAN and self-calibration on the phase-referenced data with the phase-reference map as an input model for the first phase self-calibration. Compared with the hybrid map from the limited visibility data directly obtained from fringe fitting 3C 138 data, this map has a similar dynamic range, but a higher angular resolution. Therefore, phase-reference technique is not only a means of phase connection, but also a means of increasing phase coherence time allowing self-calibration technique to be applied to much weaker sources.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Zhi-Qiang Shen, L. -L. Shang, D. -R. jiang, H. -B. Cai, X. Chen. 2006-11-20. Phase-reference VLBI Observations of the Compact Steep-Spectrum Source 3C 138. https://doi.org/10.1093/pasj%2F58.6.1033
Cite the original work for its findings. Save a collection to share your selection of sources.