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Spectrum of frequency modulation of serpentine emission as a reflection of the solar fluctuation spectrum

机译:蛇形发射的调频频谱反映了太阳起伏频谱

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We study frequency modulation of serpentine emission (SE), using data from the Vostok Antarctic station. It is shown that the previously observed 5-minute modulation of the SE carrier frequency is the most prominent and stable in the emission spectrum. Frequency fluctuations of this period are present in about 70 % of the total SE observation time under moderately quiet geomagnetic conditions (Kp=0–2). We performed a per-pixel processing of SE dynamic spectra and found that the power spectrum of the signal frequency modulation contains a clearly visi-ble peak at periods close to 5 minutes. A detailed study shows the emission spectrum matching the frequency range of the solar photospheric oscilla-tions. The results of the analysis allow us to conclude that the 5-minute modulation of the SE carrier fre-quency can be viewed as a reflection of photospheric fluctuations with the same period that is typical for the solar eigenoscillations.
机译:我们使用来自Vostok南极站的数据研究蛇形发射(SE)的频率调制。结果表明,先前观察到的SE载波频率的5分钟调制在发射光谱中是最突出和最稳定的。在中等安静的地磁条件下(Kp = 0–2),此期间的频率波动约占总SE观测时间的70%。我们对SE动态频谱进行了每个像素的处理,发现信号频率调制的功率频谱在接近5分钟的时间内包含一个明显可见的峰值。详细研究表明,发射光谱与太阳光球振荡的频率范围相匹配。分析的结果使我们可以得出结论,SE载波频率的5分钟调制可以看作是光球波动的反映,具有与太阳本征振荡相同的周期。

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