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首页> 外文期刊>Solar physics >Analysis of Intermittency in Submillimeter Radio and Hard X-Ray Data During the Impulsive Phase of a Solar Flare
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Analysis of Intermittency in Submillimeter Radio and Hard X-Ray Data During the Impulsive Phase of a Solar Flare

机译:太阳耀斑脉冲阶段亚毫米波无线电和硬X射线数据的间歇性分析

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摘要

We present an analysis of intermittent processes occurring during the impulsive phase of the flare SOL2012-03-13, using hard X-rays and submillimeter radio data. Intermittency is a key characteristic in turbulent plasmas and has so far only been analyzed for hard X-ray data. Since in a typical flare the same accelerated electron population is believed to produce both hard X-rays and gyrosynchrotron radiation, we compare the two time profiles by searching for intermittency signatures. For this, we define a cross-wavelet power spectrum, which is used to obtain the local intermittency measure, or . When greater than three, the square coefficients indicate a local intermittent process. The coefficient distribution in time and scale helps to identify avalanche or cascade energy release processes. We find two different and well-separated intermittent behaviors in the submillimeter data: for scales greater than 20 s, a broad distribution during the rising and maximum phases of the emission seems to favor a cascade process; for scales below 1 s, short pulses centered on the peak time are representative of avalanches. When applying the same analysis to hard X-rays, we find that only the scales above 10 s produce a distribution related to a cascade energy fragmentation. Our results suggest that different acceleration mechanisms are responsible for tens of keV and MeV energy ranges of electrons.
机译:我们使用硬X射线和亚毫米波无线电数据,对火炬SOL2012-03-13脉冲阶段发生的间歇过程进行了分析。间歇性是湍流等离子体中的关键特征,到目前为止,仅对硬X射线数据进行了分析。由于在典型的耀斑中,相同的加速电子种群被认为会产生硬X射线和回旋回旋加速器辐射,因此我们通过搜索间歇性签名来比较两个时间分布。为此,我们定义了一个交叉小波功率谱,该谱用于获取局部间歇性度量或。当大于3时,平方系数表示局部间歇过程。时间和尺度上的系数分布有助于识别雪崩或级联能量释放过程。我们在亚毫米波数据中发现两种截然不同的间歇行为:对于大于20 s的尺度,在发射的上升阶段和最大阶段的广泛分布似乎有利于级联过程;对于小于1 s的刻度,以峰值时间为中心的短脉冲代表雪崩。将相同的分析应用于硬X射线时,我们发现只有10 s以上的尺度才会产生与级联能量碎片相关的分布。我们的结果表明,不同的加速机制对电子的数十keV和MeV能量范围负责。

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