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Multi-scale reconnections in a complex CME
Authors:L van Driel-Gesztelyi  CP Goff  P Démoulin  JL Culhane  SA Matthews  LK Harra  CH Mandrini  K-L Klein  H Kurokawa
Institution:1. Mullard Space Science Laboratory, University College London, Holmbury St. Mary, Dorking, Surrey RH5 6NT, UK;2. Observatoire de Paris, LESIA, UMR 8109 (CNRS), 92195 Meudon, Cedex Principal, France;3. Konkoly Observatory of the Hungarian Academy of Sciences, Budapest, Hungary;4. Instituto de Astronomía y Física del Espacio, CONICET-UBA, CC. 67 Suc. 28, 1428 Buenos Aires, Argentina;5. Hida & Kwasan Observatories, Kyoto University, Yamashina, Kyoto 607, Japan
Abstract:A series of three flares of GOES class M, M and C, and a CME were observed on 20 January 2004 occurring in close succession in NOAA 10540. Types II, III, and N radio bursts were associated. We use the combined observations from TRACE, EIT, Hα images from Kwasan Observatory, MDI magnetograms, GOES, and radio observations from Culgoora and Wind/ WAVES to understand the complex development of this event. We reach three main conclusions. First, we link the first two impulsive flares to tether-cutting reconnections and the launch of the CME. This complex observation shows that impulsive quadrupolar flares can be eruptive. Second, we relate the last of the flares, an LDE, to the relaxation phase following forced reconnections between the erupting flux rope and neighbouring magnetic field lines, when reconnection reverses and restores some of the pre-eruption magnetic connectivities. Finally, we show that reconnection with the magnetic structure of a previous CME launched about 8 h earlier injects electrons into open field lines having a local dip and apex (located at about six solar radii height). This is observed as an N-burst at decametre radio wavelengths. The dipped shape of these field lines is due to large-scale magnetic reconnection between expanding magnetic loops and open field lines of a neighbouring streamer. This particular situation explains why this is the first N-burst ever observed at long radio wavelengths.
Keywords:Magnetic reconnection  Sun: magnetic fields  Sun: EUV  Sun: flares  Sun: coronal mass ejection  Sun: radio  Radio burst
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