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Dynamics and Characteristics of Waves in the Zebra Radio Source

机译:斑马纹无线电源中波的动力学和特性

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We analyzed the 17 August 1998 zebra event and showed that some quasi-periodic oscillations modulate the zebra-stripe frequencies. We determined the period of these oscillations as P-n = 2.01 +/- 0.03 (in numbers of zebra stripes) and as P-f = 11.8 +/- 0.17 MHz. In the first part of the analyzed zebra, we found a stable density wave that slowly propagated with the frequency drift less than 0.4 MHz s(-1). Then, a stationary density wave appeared followed by a transformation of the waves to ones with longer periods. These long-period waves were recorded before and after the time interval when no zebra stripes were observed. We interpreted these density waves as magnetosonic waves. We calculated their wavelength and propagating velocity, considering two types of density models of the solar atmosphere. We also estimated the characteristic density and magnetic-field strength as N approximate to 9.2 x 10(8) cm(-1) and B approximate to 0.73 G, respectively. We found similar velocities derived from drifts of the density wave and velocities calculated from the density and magnetic-field strength considering gyro-harmonic numbers of zebra stripes.
机译:我们分析了 1998 年 8 月 17 日的斑马线事件,发现一些准周期性振荡调制了斑马线频率。我们将这些振荡的周期确定为 P-n = 2.01 +/- 0.03(以斑马条纹数表示)和 P-f = 11.8 +/- 0.17 MHz。在分析斑马线的第一部分,我们发现了一个稳定的密度波,其传播速度缓慢,频率漂移小于0.4 MHz s(-1)。然后,出现了一个静止的密度波,随后这些波转变为周期较长的波。这些长周期波是在没有观察到斑马条纹的时间间隔之前和之后记录的。我们将这些密度波解释为磁声波。我们计算了它们的波长和传播速度,考虑了太阳大气的两种密度模型。我们还估计了特征密度和磁场强度,N近似于9.2 x 10(8) cm(-1),B近似于0.73 G。我们发现从密度波的漂移得出的速度与从密度和磁场强度计算的速度得出相似,考虑了斑马条纹的陀螺谐波数。

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