Quiet solar corona: daily images at 8.8–10.7 cm wavelengths

Pub Date : 2023-06-29 DOI:10.12737/stp-92202308
Alexander Altyntsev, Mariia Globa, Nataliya Meshalkina
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 The spectral density of the solar microwave flux at a frequency of 2.8 GHz, the so-called F10.7 index, is one of the main solar activity indices used as input parameters in models of Earth’s ionosphere. The paper considers the relationship between total radio fluxes and changes in the structure of sources on the solar disk during an interval of 50 days. During the period of daily observations from September 1 to October 20, 2021, the number of active regions on the disk changed several times, and the integral flux density at 2.8 GHz changed up to 1.5 times. We determine the relative contributions to the integral flux of bremsstrahlung of near-limb brightenings and plage regions, as well as bremsstrahlung in magnetic fields of active regions. The measured brightness temperatures of SRH radio maps are compared to the model temperatures calculated from observations of extreme ultraviolet emission (EUV) with the AIA/SDO telescope. The results of the analysis can be used to organize regular measurements of the corrected solar activity proxy index F10.7 at SRH, in which the contribution of gyroresonance emission is excluded.","PeriodicalId":0,"journal":{"name":"","volume":null,"pages":null},"PeriodicalIF":0.0,"publicationDate":"2023-06-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.12737/stp-92202308","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

We discuss results of test observations of the 3–6 GHz range array of the Siberian Radio Heliograph (SRH). A method for calibrating brightness temperatures of images was verified using measurements of the brightness temperature of the quiet Sun at a minimum between solar activity cycles 20 and 21 known in the literature. The obtained time dependences of the integral solar flux at 2.8 GHz are similar to those measured at the Dominion Radio Astrophysical Observatory (DRAO), but the absolute values of SRH fluxes are lower relative to the DRAO fluxes by 10–15 %. The spectral density of the solar microwave flux at a frequency of 2.8 GHz, the so-called F10.7 index, is one of the main solar activity indices used as input parameters in models of Earth’s ionosphere. The paper considers the relationship between total radio fluxes and changes in the structure of sources on the solar disk during an interval of 50 days. During the period of daily observations from September 1 to October 20, 2021, the number of active regions on the disk changed several times, and the integral flux density at 2.8 GHz changed up to 1.5 times. We determine the relative contributions to the integral flux of bremsstrahlung of near-limb brightenings and plage regions, as well as bremsstrahlung in magnetic fields of active regions. The measured brightness temperatures of SRH radio maps are compared to the model temperatures calculated from observations of extreme ultraviolet emission (EUV) with the AIA/SDO telescope. The results of the analysis can be used to organize regular measurements of the corrected solar activity proxy index F10.7 at SRH, in which the contribution of gyroresonance emission is excluded.
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安静的日冕:8.8-10.7厘米波长的每日图像
讨论了西伯利亚射电日像仪(SRH) 3 ~ 6ghz波段阵列的试验观测结果。通过测量文献中已知的太阳活动周期20和21之间的最低安静太阳的亮度温度,验证了一种校准图像亮度温度的方法。得到的2.8 GHz太阳积分通量的时间依赖性与多米尼安射电天体物理天文台(DRAO)的测量值相似,但SRH通量的绝对值相对于DRAO通量要低10 - 15%。2.8 GHz频率下太阳微波通量的谱密度,即所谓的F10.7指数,是地球电离层模型中用作输入参数的主要太阳活动指数之一。本文考虑了每隔50天太阳辐射源结构变化与总射电通量之间的关系。在2021年9月1日至10月20日的逐日观测期间,盘上活跃区域数发生了多次变化,2.8 GHz积分通量密度变化高达1.5倍。我们确定了近翼亮区和斑块区以及活跃区磁场中的韧致辐射对积分通量的相对贡献。将测量到的SRH射电图的亮度温度与AIA/SDO望远镜观测到的极紫外辐射(EUV)计算出的模型温度进行比较。分析结果可用于组织在SRH校正太阳活动代理指数F10.7的定期测量,其中陀螺仪共振发射的贡献被排除在外。
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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