Synchronized observations by using the STEREO and the largest ground-based decametre radio telescope

被引:0
作者
A. A. Konovalenko
A. A. Stanislavsky
H. O. Rucker
A. Lecacheux
G. Mann
J.-L. Bougeret
M. L. Kaiser
C. Briand
P. Zarka
E. P. Abranin
V. V. Dorovsky
A. A. Koval
V. N. Mel’nik
D. V. Mukha
M. Panchenko
机构
[1] Institute of Radio Astronomy,Space Research Institute
[2] Austrian Academy of Sciences,Departement de Radioastronomie CNRS UMR 8644
[3] Observatoire de Paris,LESIA
[4] Astrophysical Institute Potsdam,LESIA, Observatoire de Paris, CNRS, UPMC
[5] Observatoire Paris-Site de Meudon,undefined
[6] NASA GSFC,undefined
[7] Universite Paris Diderot,undefined
来源
Experimental Astronomy | 2013年 / 36卷
关键词
Solar corona; Solar radio radiation; Telescopes; Space vehicle instruments;
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中图分类号
学科分类号
摘要
We consider the approach to simultaneous (synchronous) solar observations of radio emission by using the STEREO-WAVES instruments (frequency range 0.125–16 MHz) and the largest ground-based low-frequency radio telescope. We illustrate it by the UTR-2 radio telescope implementation (10–30 MHz). The antenna system of the radio telescope is a T-shape-like array of broadband dipoles and is located near the village Grakovo in the Kharkiv region (Ukraine). The third observation point on the ground in addition to two space-based ones improves the space-mission performance capabilities for the determination of radio-emission source directivity. The observational results from the high sensitivity antenna UTR-2 are particularly useful for analysis of STEREO data in the condition of weak event appearances during solar activity minima. In order to improve the accuracy of flux density measurements, we also provide simultaneous observations with a large part of the UTR-2 radio telescope array and its single dipole close to the STEREO-WAVES antennas in sensitivity. This concept has been studied by comparing the STEREO data with ground-based records from 2007–2011 and shown to be effective. The capabilities will be useful in the implementation of new instruments (LOFAR, LWA, MWA, etc.) and during the future Solar Orbiter mission.
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页码:137 / 154
页数:17
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