MULTI-POINT SHOCK AND FLUX ROPE ANALYSIS OF MULTIPLE INTERPLANETARY CORONAL MASS EJECTIONS AROUND 2010 AUGUST 1 IN THE INNER HELIOSPHERE

We present multi-point in situ observations of a complex sequence of coronal mass ejections (CMEs) which may serve as a benchmark event for numerical and empirical space weather prediction models. On 2010 August 1, instruments on various space missions, Solar Dynamics Observatory/Solar and Heliosphe...

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Veröffentlicht in:The Astrophysical journal 2012-10, Vol.758 (1), p.1-18
Hauptverfasser: MÖSTL, C, FARRUGIA, C. J, DAVIES, J. A, ROLLETT, T, LUHMANN, J. G, NITTA, N, MULLIGAN, T, JENSEN, E. A, FORSYTH, R, LAVRAUD, B, DE KONING, C. A, VERONIG, A. M, KILPUA, E. K. J, GALVIN, A. B, ZHANG, T. L, ANDERSON, B. J, JIAN, L. K, LIU, Y, EASTWOOD, J. P, HARRISON, R. A, WEBB, D. F, TEMMER, M, ODSTRCIL, D
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Sprache:eng
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Zusammenfassung:We present multi-point in situ observations of a complex sequence of coronal mass ejections (CMEs) which may serve as a benchmark event for numerical and empirical space weather prediction models. On 2010 August 1, instruments on various space missions, Solar Dynamics Observatory/Solar and Heliospheric Observatory/Solar-TErrestrial-RElations-Observatory (SDO/SOHO/STEREO), monitored several CMEs originating within tens of degrees from the solar disk center. We compare their imprints on four widely separated locations, spanning 120[degrees] in heliospheric longitude, with radial distances from the Sun ranging from MESSENGER (0.38 AU) to Venus Express (VEX, at 0.72 AU) to Wind, ACE, and ARTEMIS near Earth and STEREO-B close to 1 AU. Calculating shock and flux rope parameters at each location points to a non-spherical shape of the shock, and shows the global configuration of the interplanetary coronal mass ejections (ICMEs), which have interacted, but do not seem to have merged. VEX and STEREO-B observed similar magnetic flux ropes (MFRs), in contrast to structures at Wind. The geomagnetic storm was intense, reaching two minima in the Dst index ([approximate]-100 nT), and was caused by the sheath region behind the shock and one of two observed MFRs. MESSENGER received a glancing blow of the ICMEs, and the events missed STEREO-A entirely. The observations demonstrate how sympathetic solar eruptions may immerse at least 1/3 of the heliosphere in the ecliptic with their distinct plasma and magnetic field signatures. We also emphasize the difficulties in linking the local views derived from single-spacecraft observations to a consistent global picture, pointing to possible alterations from the classical picture of ICMEs.
ISSN:0004-637X
1538-4357
DOI:10.1088/0004-637X/758/1/10