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Understanding CME and associated shock in the solar corona by merging multi wavelengths observation

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arxiv 1409.3691 v1 pith:ED5KUYIR submitted 2014-09-12 astro-ph.SR

classification astro-ph.SR
keywords eruptiveradioeventfirstaboveassociatedburstcomplex
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Using multi-wavelength imaging observations, in EUV, white light and radio, and radio spectral data over a large frequency range, we analyzed the triggering and development of a complex eruptive event. This one includes two components, an eruptive jet and a CME which interact during more than 30 min, and can be considered as physically linked. This was an unusual event. The jet is generated above a typical complex magnetic configuration which has been investigated in many former studies related to the build-up of eruptive jets; this configuration includes fan-field lines originating from a corona null point above a parasitic polarity, which is embedded in one polarity region of large Active Region (AR). The initiation and development of the CME, observed first in EUV, does not show usual signatures. In this case, the eruptive jet is the main actor of this event. The CME appears first as a simple loop system which becomes destabilized by magnetic reconnection between the outer part of the jet and the ambient medium. The progression of the CME is closely associated with the occurrence of two successive types II bursts from distinct origin. An important part of this study is the first radio type II burst for which the joint spectral and imaging observations allowed: i) to follow, step by step, the evolution of the spectrum and of the trajectory of the radio burst, in relationship with the CME evolution; ii) to obtain, without introducing an electronic density model, the B-field and the Alfven speed.

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Cited by 1 Pith paper

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  1. Type II radio bursts and space weather phenomena: A statistical study

    astro-ph.SR 2025-07 conditional novelty 6.0 of 10

    During solar cycle 24, 518 type II radio bursts split into metric-only, metric+DH, and DH-only show 71-77% association with flares and CMEs but much weaker association with interplanetary shocks, particles, and geomag...

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