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CO-ANALYSIS OF SOLAR MICROWAVE AND HARD X-RAY SPECTRAL EVOLUTIONS. I. IN TWO FREQUENCY OR ENERGY RANGES

机译:太阳能和硬X射线光谱演化的共同分析。 I.在两个频率或能量范围内

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Solar microwave and hard X-ray spectral evolutions are co-analyzed in the 2000 June 10 and 2002 April 10 flares, and are simultaneously observed by the Owens-Valley Solar Array in the microwave band and by Yohkoh/Hard X-ray Telescope or RHESSI in the hard X-ray band, with multiple subpeaks in their light curves. The microwave and hard X-ray spectra are fitted by a power law in two frequency ranges of the optical thin part and two photon energy ranges, respectively. Similar to an earlier event in Shao & Huang, the well-known soft-hard-soft pattern of the lower energy range changed to the hard-soft-hard (HSH) pattern of the higher energy range during the spectral evolution of each subpeak in both hard X-ray flares. This energy dependence is actually supported by a positive correlation between the overall light curves and spectral evolution in the lower energy range, while it becomes an anti-correlation in the higher energy range. Regarding microwave data, the HSH pattern appears in the spectral evolution of each subpeak in the lower frequency range, which is somewhat similar to Huang & Nakajima. However, it returns back to the well-known pattern of soft-hard-harder for the overall spectral evolution in the higher frequency range of both events. This frequency dependence is confirmed by an anti-correlation between the overall light curves and spectral evolution in the lower frequency range, but it becomes a positive correlation in the higher frequency range. The possible mechanisms are discussed, respectively, for reasons why hard X-ray and microwave spectral evolutions have different patterns in different energy and frequency intervals.
机译:在2000年6月10日和2002年4月10日的耀斑中对太阳微波和硬X射线光谱的演化进行了共同分析,并通过微波波段的Owens-Valley太阳阵列和Yohkoh / Hard X射线望远镜或RHESSI进行了同时观测。在硬X射线波段中,在其光曲线中具有多个子峰。微波和硬X射线光谱通过幂律分别拟合在光学薄部分的两个频率范围和两个光子能量范围内。与Shao和Huang的早期事件类似,在每个子峰的频谱演化过程中,较低能量范围的著名的软硬-软模式变为较高能量范围的硬-软-硬(HSH)模式。两个硬X射线耀斑。实际上,在较低的能量范围内,总体光曲线与光谱演化之间的正相关关系支持了这种能量依赖性,而在较高的能量范围内,则变为反相关。关于微波数据,HSH模式出现在较低频率范围内每个子峰的频谱演化中,这与Huang&Nakajima有点相似。但是,对于两个事件的较高频率范围内的整体频谱演变,它又回到了众所周知的软硬模式。在较低的频率范围内,通过整体光曲线与光谱演化之间的反相关性可以确认这种频率相关性,但是在较高的频率范围内,它变为正相关性。分别讨论了可能的机制,原因是为什么硬X射线和微波频谱演化在不同的能量和频率间隔中具有不同的模式。

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