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Unusual Zebra Patterns in the Decimeter Wave Band

机译:分米波段的不寻常斑马图案

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An analysis of new observations showing fine structures consisting of narrowband fiber bursts as substructures of large-scale zebra-pattern stripes is carried out. We study four events using spectral observations taken with a newly built spectrometer located at the Huairou station, China, in the frequency range of 1.1 – 2.0 GHz with extremely high frequency and time resolutions (5 MHz and 1.25 ms). All the radio events were analyzed by using the available satellite data (SOHO LASCO, EIT, and MDI, TRACE, and RHESSI). Small-scale fibers always drift to lower frequencies. They may belong to a family of ropelike fibers and can also be regarded as fine structures of type III bursts and broadband pulsations. The radio emission was moderately or strongly polarized in the ordinary wave mode. In three main events fiber structure appeared as a forerunner of the entire event. All four events were small decimeter bursts. We assume that for small-scale fiber bursts the usual mechanism of coalescence of whistler waves with plasma waves can be applied, and the large-scale zebra pattern can be explained in the conventional double plasma resonance (DPR) model. The appearance of an uncommon fine structure is connected with the following special features of the plasma wave excitation in the radio source: Both whistler and plasma wave instabilities are too weak at the very beginning of the events (i.e., the continuum was absent), and the fine structure is almost invisible. Then, whistlers generated directly at DPR levels “highlight” the radio emission only from these levels owing to their interaction with plasma waves.
机译:进行了对新观测结果的分析,该观测结果显示了由窄带纤维爆发构成的精细结构,作为大规模斑马图案条纹的子结构。我们使用位于中国怀柔站的新建光谱仪在1.1 – 2.0 GHz频率范围内以极高的频率和时间分辨率(5 MHz和1.25 ms)进行光谱观察,研究了四个事件。使用可用的卫星数据(SOHO LASCO,EIT和MDI,TRACE和RHESSI)对所有无线电事件进行了分析。小规模的光纤总是漂移到较低的频率。它们可能属于绳状纤维家族,也可以看作是III型爆发和宽带脉动的精细结构。在普通波模式下,无线电发射被中等或强极化。在三个主要事件中,纤维结构是整个事件的先驱。所有四个事件均为小分米爆发。我们假设对于小规模的光纤突发,可以应用惠斯勒波与等离子波合并的通常机制,并且可以在传统的双等离子共振(DPR)模型中解释大尺寸的斑马图案。罕见的精细结构的出现与无线电源中等离子体波激发的以下特殊特征有关:在事件开始时,哨声和等离子体波的不稳定性太弱(即,没有连续体),并且精细的结构几乎是看不见的。然后,由于其与等离子体波的相互作用,直接在DPR级别生成的啸叫器仅“突出”这些级别的无线电发射。

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