用乌克兰射电望远镜研究十米波长太阳射电发射的进展。第1部分。(邀请报告)

Q4 Physics and Astronomy
A. Stanislavsky, A. Koval, I. Bubnov, A. Brazhenko
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引用次数: 0

摘要

主题和目的。本文介绍了世界著名的乌克兰射电望远镜对日冕的观测结果。这项工作的目的是对最近在观测太阳各种低频无线电发射方面取得的成就进行一致的回顾。方法和方法论。利用十米波长射电望远镜UTR-2、GURT和URAN-2,对来自太阳的安静(热)和零星(爆发样)射电发射进行了研究。介绍了来自各种来源的低频太阳射电辐射的具体特征,并描述了在每种情况下用于评估日冕在十米波长无线电波产生领域的物理参数的优化技术。结果。通过对太阳射电辐射的时间、频率和空间特征的分析,提出了许多日冕电子密度分布的模型,并对日冕中的磁场强度进行了评估。此外,我们的实验结果已证明与在不同频率范围内以及使用地面和空间仪器获得的观测数据是一致的。结论。利用乌克兰射电望远镜进行的射电观测,使人们能够以较高的时间、频率和空间分辨率研究各种局部来源的太阳射电频率发射。随着天线的大有效面积和高灵敏度,这允许应用范围广泛的方法和工具,旨在探测和分析太阳爆发,强弱强度,在自然或人为地面干扰的背景下
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PROGRESS IN THE STUDY OF DECAMETER-WAVELENGTH SOLAR RADIO EMISSION WITH UKRAINIAN RADIO TELESCOPES. Part 1. (Invited paper)
Subject and Purpose. Results are presented of the solar corona investigations performed with the world famous Ukrainian radio telescopes. The work has been aimed at offering a consistent review of recent achievements in observations of a variety of low-frequency radio emissions from the Sun. Methods and Methodology. The studies of the quiet (thermal) and sporadic (burst-like) radio emissions from the Sun have been car- ried out with the decameter-wavelength radio telescopes UTR-2, GURT and URAN-2. Specific features of the low-frequency solar radio emissions from a variety of sources are presented, with characterization of the optimized techniques that were applied in each case for evaluating physical parameters of the corona in the areas of decameter-wavelength radio wave generation. Results. The analysis of temporal, frequency and spatial characteristics of solar radio emissions has allowed suggesting a number of models for the coronal electron density distribution, and evaluating magnetic field strengths in the corona. Also, our experimental results have proven to be consistent with the observational data obtained in different frequency ranges and with the use of both ground based and space-borne instruments. Conclusions. The radio observations performed with Ukrainian radio telescopes have permitted studying, with high temporal, fre- quency and spatial resolutions, solar radio frequency emissions from various localized sources. Along with the large effective area and high sensitivity of the antennas, this permits application of a wide range of methods and tools aimed at detecting and analyzing solar bursts, of both strong and weak intensity, against the background of terrestrial interference of natural or artificial origin
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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