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Magnetoacoustic Wave Trains in the 11 July 2005 Radio Event with Fiber Bursts

机译:磁声波列车在2005年7月11日的无线电事件中发生光纤爆炸

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A dm-radio emission with fiber bursts observed on 11 July 2005 was analyzed using wavelet filtration and spectral methods. In filtered radio spectra we found structures with different characteristic period P and frequency drift FD: i) fiber substructures (composed of dot emissions) with P 1≈ 0.5 s, FD1=− 87 MHz s−1 on average, ii) fiber structures with P 2≈1.9 s, and iii) drifting structures with P 3≈81.4 s, FD2=− 8.7, + 98.5, and − 21.8 MHz s−1. In the wavelet spectra we recognized patterns having the form of tadpoles. They were detected with the same characteristic periods P as found for the filtered structures. The frequency drift of the tadpole heads is found to be equal to the frequency drift of some groups of fibers for the long-period wavelet tadpoles (P 3) and to the frequency drift of individual fibers for the short-period tadpoles (P 2). Considering these wavelet tadpoles as signatures of propagating magnetoacoustic wave trains, the results indicate the presence of several wave trains in the fibers’ source. While the long-period wave trains trigger or modulate a whole group of fibers, the short-period ones look like being connected with individual fiber bursts. This result supports the model of fibers based on magnetoacoustic waves. Using a density model of the solar atmosphere we derived the velocities of the magnetoacoustic waves, 107 and 562 km s−1, and setting them equal to the Alfvén ones we estimated the magnetic field in the source of fiber bursts as 10.7 and 47.8 G.
机译:使用小波滤波和光谱方法分析了2005年7月11日观测到的带有纤维破裂的dm无线电发射。在经过滤波的无线电频谱中,我们发现具有不同特征周期P和频率漂移FD的结构:i)P 1 ≈0.5 s,FD1 =-87 MHz s-1的光纤子结构(由点发射组成) 平均来说,ii)P 2 ≈1.9s的纤维结构,iii)P 3 ≈81.4s的漂移结构,FD2 = − 8.7,+ 98.5,和-21.8 MHz s-1 。在小波光谱中,我们识别出具有the形式的图案。以与过滤结构相同的特征周期P检测它们。发现long头的频率漂移等于长周期小波t(P 3 )的某些光纤组的频率漂移,以及短周期t的单个光纤的频率漂移。 (P 2 )。将这些小波t视为传播的磁声波列的标志,结果表明纤维源中存在多个波列。长周期的波串触发或调制一整组光纤,而短周期的波串看起来像是与各个光纤突发连接。这一结果支持了基于磁声波的纤维模型。使用太阳大气的密度模型,我们得出了107和562 km s-1 的磁声波的速度,并将它们设置为与Alfvén相等,我们估计光纤突发源中的磁场为10.7。和47.8G。

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