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Observations of CME-related phenomena in a wide spectral range

机译:在宽光谱范围内观察CME相关现象

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摘要

We study pre-eruptive, eruptive, and post-eruptive phenomena related to a CME that occurred on November 23, 2000 by means of joint analyses of data from various spectral ranges. Almost all known CME-associated phenomena were observed during this event, i.e., a filament eruption, solar flare, dimmings, and a post-eruptive arcade formation. Following a chain of events observed in various spectral ranges, we find that the event occurred in an activity complex consisting of active regions 9231 and 9238, and that it was triggered by a magnetic flux emergence, which caused a flare in AR 9231. In turn, the flare triggered activation and eruption of the filament followed by the CME and the flare in AR 9238 in which the post-eruptive arcade was observed. We discuss some characteristics of the flare and CME and also estimate the magnetic field strength in the coronal arcade to be about 200 G from spatially resolved polarization measurements in microwaves with radio telescopes. In this particular case, the only significant emission mechanism is optically thin free-free emission, and the possible contribution of nonthermal emissions cannot change our estimate of the magnetic field strength in the corona. However, generally one should make sure that the nonthermal contribution cannot be important in similar cases; otherwise, the magnetic field can be well overestimated. Here, we specifically address the identification technique of the radio emission mechanism.
机译:我们通过对各种光谱范围的数据进行联合分析,研究了2000年11月23日发生的与CME有关的喷发前,喷发和喷发后的现象。在此事件期间,几乎观察到了所有与CME相关的现象,即灯丝喷发,太阳耀斑,变暗和喷发后的拱廊形成。在各种光谱范围内观察到一系列事件之后,我们发现该事件发生在由活动区域9231和9238组成的活动复合物中,并且是由磁通量的出现触发的,这导致了AR 9231的爆发。 ,火光触发了细丝的激活和喷发,随后触发了CME和AR 9238中的火光,在喷发后的街机中观察到了这种情况。我们讨论了耀斑和CME的一些特征,并通过用射电望远镜在微波中进行空间分辨的极化测量,估计了日冕拱廊中的磁场强度约为200G。在这种特殊情况下,唯一重要的发射机制是光学上薄的自由发射,并且非热发射的可能贡献不能改变我们对电晕磁场强度的估计。但是,通常应确保在类似情况下,非热影响不重要。否则,磁场可能会被高估。在这里,我们专门解决无线电发射机制的识别技术。

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