Diagnostics of plasma jets in the solar corona

S. Anfinogentov, T. Kaltman, Alexey Stupishin, V. Nakariakov, Maria Lukitcheva
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Abstract

The paper discusses the diagnostics of plasma jets in the solar corona with the use of data from modern space- and ground-based telescopes observing the Sun in the extreme ultraviolet (EUV) and micro- wave bands. We examine observational parameters of EUV and radio emission in events associated with plasma jets, depending on the mechanism of formation, initiation conditions, and evolution of the jets. The opportunities provided by the study of plasma jets, which relies on simultaneous observations in different bands, are highlighted. For a number of jets, we have measured their primary parameters; and in this paper we present preliminary results of statistical processing of the data obtained. Microwave observations of several specific events, made by ground-based instruments RATAN-600, SRH, and Nobeyama Radioheliograph, are considered in detail. The diagnostic capabilities of these instruments for studying coronal jets are shown. To analyze the three-dimensional structure of the coronal magnetic field, we have used SDO/HMI data, which allowed for the reconstruction of the field in the lower corona. The information gained is compared with the results of diagnostics of the magnetic field at the base of the corona according to RATAN-600 data. The purpose of the methods developed is to determine the physical mechanisms responsible for the generation, collimation, and dynamics of plasma jets in the solar atmosphere.
太阳日冕中等离子体喷流的诊断
本文利用现代空间和地面望远镜在极紫外和微波波段观测太阳的数据,讨论了对日冕等离子体喷流的诊断。根据等离子体射流的形成机制、起始条件和演化,研究了与等离子体射流相关的EUV和射电发射的观测参数。强调了等离子体射流研究提供的机会,这种研究依赖于不同波段的同时观测。对于许多喷流,我们已经测量了它们的主要参数;并对所得数据进行了初步的统计处理。本文详细讨论了由地面仪器RATAN-600、SRH和Nobeyama放射日像仪所作的若干特定事件的微波观测。这些仪器在研究日冕喷流方面的诊断能力被展示出来。为了分析日冕磁场的三维结构,我们使用了SDO/HMI数据,该数据可以重建下日冕的磁场。将所得信息与根据RATAN-600数据对日冕底部磁场的诊断结果进行了比较。这些方法的目的是确定太阳大气中等离子体射流的产生、准直和动力学的物理机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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