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A comparative study of amplitude calibrations for the East Asia VLBI Network: A priori and template spectrum methods

  • Ilje Cho
  • , Taehyun Jung*
  • , Guang-Yao Zhao
  • , Kazunori Akiyama
  • , Satoko Sawada-Satoh
  • , Motoki Kino
  • , Do-Young Byun
  • , Bong Won Sohn
  • , Katsunori M. Shibata
  • , Tomoya Hirota
  • , Kotaro Niinuma
  • , Yoshinori Yonekura
  • , Kenta Fujisawa
  • , Tomoaki Oyama
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

We present the results of a comparative study of amplitude calibrations for the East Asia VLBI Network (EAVN) at 22 and 43 GHz using two different methods of an "a priori' and a "template spectrum", particularly on lower declination sources. Using observational data sets of early EAVN observations, we investigated the elevation-dependence of the gain values at seven stations of the KaVA (KVN and VERA Array) and three additional telescopes in Japan (Takahagi 32m, Yamaguchi 32 m, and Nobeyama 45m). By comparing the independently obtained gain values based on these two methods, we found that the gain values from each method were consistent within 10% at elevations higher than 10?. We also found that the total flux densities of two images produced from the different amplitude calibrations were in agreement within 10% at both 22 and 43 GHz. By using the template spectrum method, furthermore, the additional radio telescopes can participate in KaVA (i.e., EAVN), giving a notable sensitivity increase. Therefore, our results will constrain the detailed conditions in order to measure the VLBI amplitude reliably using EAVN, and discuss the potential of possible expansion to telescopes comprising EAVN.

Original languageEnglish
Article number87
JournalPublications of the Astronomical Society of Japan
Volume69
Issue number6
DOIs
Publication statusPublished - Dec 2017

Keywords

  • Methods: data analysis
  • Radio continuum: galaxies
  • Radio lines: general
  • Techniques: high angular resolution
  • Techniques: interferometric

ASJC Scopus subject areas

  • Astronomy and Astrophysics
  • Space and Planetary Science

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