Based on a joint analysis of the data from 10 midlatitude decameter radars the effects are investigated during 80 x-ray flares in the period 2013-2017. For the investigation nine mid-latitude SuperDARN radars of the northern hemisphere and Ekaterinburg coherent decameter radar of ISTP SB RAS are used. All the radars work in the same 8-20MHz frequency band and have similar hardware and software. During the analysis the temporal dynamics of noise from each of the radar direction and for each flare is investigated separately. As a result, on the basis of about 13000 daily measurements we found a strong anticorrelation between noise power and x-ray flare intensity, that allows to use short-wave sky noise to diagnose the ionospheric effects of x-ray solar flares. It is shown that in 88.3\% of cases an attenuation of daytime decameter radio noise is observed during solar flare, correlating with the temporal dynamics of the solar flare. The intensity of decameter noise anticorrelates well (the Pearson correlation coefficient better than -0.5) with the shape of the X-ray flare in the daytime (for solar elevation angle $>0$) in 33\% of cases, the average Pearson correlation over the daytime is about -0.34. Median regression coefficient between GOES 0.1-0.8nm x-ray intensity and daytime sky-noise attenuation is about $-4.4\cdot10^{4}\ [dB\cdot m^{2}/Wt]$. Thus, it has been shown that measurements of the decameter sky noise level at midlatitude decameter radars can be used to study the ionospheric absorption of high-frequency waves in the lower ionosphere during x-ray solar flares. This can be explained by the assumption that the most part of decameter sky noise detected by the radars can be interpreted as produced by ground sources at distances of the first propagation hop (\textasciitilde{} 3000 km).
翻译:在对10个中纬度10度雷达的数据进行联合分析的基础上,在2013-2017年期间的80个紫外线信号中,对影响进行了调查。在调查中,使用了北半球的9个中纬度超DARN雷达和北半球的Ekaterinburg 连续的10厘米雷达。所有雷达都在同一8-20MHz频率波段工作,并有类似的硬件和软件。在分析中,对每个雷达方向和每枚耀斑的噪音的时间动态进行了分别调查。因此,根据大约13 000次的每日测量,我们发现,噪音动力和X射线耀斑强度之间的强烈反焦距差。在X射线STP SBBRAS雷达中,使用短波的噪音来诊断电离层影响。在太阳耀斑期间,观测到日度10度10度无线电噪音与太阳耀斑的时光动态动态有关。 10度的振荡度强度是(在每天的温度比值为0.5),在太阳-时平时平平平平平平平平平平时,显示的是X平时平时的平平面的温度比比。