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Radio Bursts Associated with Flare and Ejecta in the 13 July 2004 Event

机译:2004年7月13日事件中与耀斑和弹射有关的无线电爆炸

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We investigate coronal transients associated with a GOES M6.7 class flare and a coronal mass ejection (CME) on 13 July 2004. During the rising phase of the flare, a filament eruption, loop expansion, a Moreton wave, and an ejecta were observed. An EIT wave was detected later on. The main features in the radio dynamic spectrum were a frequency-drifting continuum and two type II bursts. Our analysis shows that if the first type II burst was formed in the low corona, the burst heights and speed are close to the projected distances and speed of the Moreton wave (a chromospheric shock wave signature). The frequency-drifting radio continuum, starting above 1 GHz, was formed almost two minutes prior to any shock features becoming visible, and a fast-expanding piston (visible as the continuum) could have launched another shock wave. A possible scenario is that a flare blast overtook the earlier transient and ignited the first type II burst. The second type II burst may have been formed by the same shock, but only if the shock was propagating at a constant speed. This interpretation also requires that the shock-producing regions were located at different parts of the propagating structure or that the shock was passing through regions with highly different atmospheric densities. This complex event, with a multitude of radio features and transients at other wavelengths, presents evidence for both blast-wave-related and CME-related radio emissions.
机译:我们在2004年7月13日调查了与GOES M6.7级耀斑和日冕物质抛射(CME)相关的日冕瞬变。在爆发的上升阶段,观察到细丝喷发,环状膨胀,莫顿波和抛射。稍后检测到EIT波。无线电动态频谱的主要特征是一个连续漂移的频率和两个II型猝发。我们的分析表明,如果在低电晕中形成第一个II型猝发,则猝发的高度和速度接近于摩尔顿波(色球冲击波信号)的投影距离和速度。频率漂移无线电连续体始于1 GHz以上,是在任何冲击特征变得可见之前大约两分钟形成的,而快速膨胀的活塞(可视为连续体)可能会发射另一个冲击波。一种可能的情况是,火炬爆炸超过了先前的瞬变并点燃了第一个II型爆炸。第二类II型爆发可能是由相同的冲击形成的,但前提是冲击以恒定速度传播。这种解释还要求产生冲击的区域位于传播结构的不同部分,或者使冲击穿过大气密度高度不同的区域。这个复杂的事件具有许多无线电特征和其他波长的瞬变,为爆炸波相关的辐射和CME相关的无线电发射提供了证据。

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