首页> 外文期刊>Astronomy letters >Thermal cyclotron radiation from hot coronal loops and peculiarities of the polarization structure of solar microwave emission sources: 1. Brightness temperature
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Thermal cyclotron radiation from hot coronal loops and peculiarities of the polarization structure of solar microwave emission sources: 1. Brightness temperature

机译:来自冠状热圈的热回旋辐射和太阳微波发射源偏振结构的特殊性:1.亮度温度

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摘要

We discuss the possible contribution of the thermal cyclotron radiation from hot coronal magnetic loops to the observed characteristics of the microwave emission from solar active regions. Based on the simplest three-dimensional model of a loop in the shape of a hot torus, we have calculated the expected peculiarities of the frequency and polarization structures of microwave emission Sources associated with sunspots and containing coronal loops. Our model Calculations of the two-dimensional brightness temperature distributions at various wavelengths for the ordinary and extraordinary modes and the wavelength dependences of the brightness temperatures are presented in the first part of the work. The loop size, the electron density, and the source position on the disk have been found to affect these characteristics. Our numerical calculations of the brightness temperature distributions and spectra have confirmed the well-known assumption that Wider certain conditions the spectrum of a hot filament can contain cyclotron lines and the sense of the polarization can change over the range. The results obtained here refer to the brightness temperature along the line of sight that crosses the photosphere at a point with given coordinates, i.e., these are the emission characteristics at a fixed point of the Source. Integrated characteristics (the flux from the entire source and its polarization) and a discussion of the hot loop model will be given in the second part of the work.
机译:我们讨论了来自热日冕磁环的热回旋辐射对太阳活动区域微波发射特征的可能贡献。基于热圆环形状的环的最简单的三维模型,我们计算了与黑子相关联并包含日冕环的微波发射源的频率和极化结构的预期特性。我们在工作的第一部分中介绍了用于普通模式和非常规模式的各种波长的二维亮度温度分布的模型计算以及亮度温度的波长依赖性。已经发现回路尺寸,电子密度和磁盘上的源位置会影响这些特性。我们对亮度温度分布和光谱的数值计算已经确认了一个众所周知的假设,即在某些特定条件下,热灯丝的光谱可能包含回旋加速器谱线,并且偏振感会在整个范围内变化。此处获得的结果是指在给定坐标下沿视线穿过光球的视线的亮度温度,即这些点是光源固定点处的发射特性。工作的第二部分将提供综合特性(来自整个源的通量及其极化)和热循环模型的讨论。

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