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On the Possible Connection between Photospheric 5-Min Oscillation and Solar Flare Microwave Emission

机译:关于光球5分钟振荡与太阳耀斑微波发射之间的可能联系

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Dynamic spectra of low-frequency modulation of microwave emission from solar flares are obtained. Data of 15 bursts observed in 1989–2000 with Metsähovi radio telescope at 37 GHz have been used. During 13 bursts a 5-min modulation of the microwave emission intensity was detected with the frequency of ν I = 3.2± 0.24 (1σ) mHz. Five bursts revealed a 5-min wave superimposed on a ∼1 Hz, linear frequency modulated signal generated, presumably, by coronal magnetic loop, this wave frequency is νfm = 3.38± 0.37 (1σ) mHz. Both intensity and frequency modulations detected are in good agreement with the data on 5-min global oscillations of photosphere and with the data on the umbral velocity oscillations observed in the vicinity of sunspots. Possible role of p-mode photospheric oscillations in modulation of microwave burst emission is discussed.
机译:获得了来自太阳耀斑的微波发射的低频调制的动态光谱。使用了在1989-2000年使用Metsähovi射电望远镜在37 GHz频率下观测到的15次猝发数据。在13个突发期间,检测到微波发射强度的5分钟调制,频率为νI = 3.2±0.24(1σ)mHz。五个脉冲串揭示了一个5分钟的波,该波叠加在一个约1 Hz的线性调频信号上,该信号大概是由日冕磁环产生的,该波频率为νfm = 3.38±0.37(1σ)mHz。所检测到的强度和频率调制与光球在5分钟内整体振荡的数据以及在黑子附近观测到的本影速度振荡的数据都非常一致。讨论了p模式光球振荡在调制微波突发发射中的可能作用。

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  • 来源
    《Solar Physics 》 |2006年第1期| 89-106| 共18页
  • 作者单位

    Institute of Applied Physics Nizhny Novgorod;

    Institute of Applied Physics Nizhny Novgorod;

    Pulkovo Observatory;

    Metsähovi Radio Observatory;

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