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首页> 外文期刊>The Astrophysical Journal. Letters >Diffraction, refraction, and reflection of an extreme-ultraviolet wave observed during its interactions with remote active regions
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Diffraction, refraction, and reflection of an extreme-ultraviolet wave observed during its interactions with remote active regions

机译:在与远距离活动区域相互作用期间观察到的极紫外波的衍射,折射和反射

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We present observations of the diffraction, refraction, and reflection of a global extreme-ultraviolet (EUV) wave propagating in the solar corona. These intriguing phenomena are observed when the wave interacts with two remote active regions, and together they exhibit properties of an EUV wave. When the wave approached AR11465, it became weaker and finally disappeared in the active region, but a few minutes later a new wavefront appeared behind the active region, and it was not concentric with the incoming wave. In addition, a reflected wave was also simultaneously observed on the wave incoming side. When the wave approached AR11459, it transmitted through the active region directly and without reflection. The formation of the new wavefront and the transmission could be explained with diffraction and refraction effects, respectively. We propose that the different behaviors observed during the interactions may be caused by different speed gradients at the boundaries of the two active regions. We find that the EUV wave formed ahead of a group of expanding loops a few minutes after the start of the loops' expansion, which represents the initiation of the associated coronal mass ejection (CME). Based on these results, we conclude that the EUV wave should be a nonlinear magnetosonic wave or shock driven by the associated CME, which propagated faster than the ambient fast mode speed and gradually slowed down to an ordinary linear wave. Our observations support the hybrid model that includes both fast wave and slow non-wave components.
机译:我们介绍了在日冕中传播的全球极紫外(EUV)波的衍射,折射和反射现象。当波与两个远程活动区域相互作用时,会观察到这些有趣的现象,并且它们一起表现出EUV波的特性。当波接近AR11465时,它变弱并最终在活动区域​​中消失,但是几分钟后,在活动区域​​后面出现了一个新的波前,并且它与入射波并不同心。另外,在波入射侧也同时观察到反射波。当波接近AR11459时,它直接穿过有源区域,没有反射。新的波前的形成和透射可以分别用衍射和折射效应来解释。我们建议在交互过程中观察到的不同行为可能是由两个活动区域边界处的不同速度梯度引起的。我们发现EUV波在循环开始膨胀后的几分钟内在一组膨胀循环之前形成,这表示相关冠状物质抛射(CME)的开始。根据这些结果,我们得出结论,EUV波应该是由关联的CME驱动的非线性磁声波或激波,其传播速度快于环境快速模式速度,并逐渐减速为普通的线性波。我们的观察结果支持包含快速波动和缓慢非波动成分的混合模型。

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