4.7 Article

A broadband VLBI system using transportable stations for geodesy and metrology: an alternative approach to the VGOS concept

期刊

JOURNAL OF GEODESY
卷 95, 期 4, 页码 -

出版社

SPRINGER
DOI: 10.1007/s00190-021-01479-8

关键词

Broadband VLBI; Transportable VLBI; Direct RF-sampling; Closure delay

资金

  1. JGN research testbed network
  2. Joint Development Research of the National Astronomical Observatory of Japan (NAOJ) in 2013-2014
  3. French National Research Agency under the LABEX Cluster of Excellence FIRST-TF [ANR-10-LABX-48-01]

向作者/读者索取更多资源

A new broadband VLBI system, inspired by the concept of VGOS, has been developed using small diameter node antennas in conjunction with a large 'hub' antenna to overcome sensitivity limitations while eliminating error sources associated with large antennas. Experiments using this approach have been conducted over short and intercontinental distances, revealing structure effects in correlation amplitude and presenting a source size model based on frequency-dependent data.
We have developed a broadband VLBI (very long baseline interferometry) system inspired by the concept of the VLBI Global Observing System (VGOS). The new broadband VLBI system was implemented in the Kashima 34 m antenna and in two transportable stations utilizing 2.4 m diameter antennas. The transportable stations have been developed as a tool for intercontinental frequency comparison but are equally useful for geodesy. To enable practical use of such small VLBI stations in intercontinental VLBI, we have developed the procedure of node-hub style VLBI: In joint observation with a large, high sensitivity 'hub' antenna, the closure delay relation provides a virtual delay observable between 'node' stations. This overcomes the limited sensitivity of the small diameter node antennas, while error sources associated with large diameter antennas, such as gravitational deformation and delay changes in necessarily long signal cables, are eliminated. We show that this scheme does not result in an increased sensitivity to radio source structure if one side of the baseline triangle is kept short. We have performed VLBI experiments utilizing this approach over both short range and intercontinental distance. This article describes the system components, signal processing procedure, experiment, and results in terms of baseline repeatability. Our measurements reveal signatures of structure effects in the correlation amplitude of several of the observed radio sources. We present a model of the frequency-dependent source size for 1928+738 derived from correlation amplitude data observed in four frequency bands.

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