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CME dynamics using coronagraph and interplanetary ejecta data
Authors:Alisson Dal Lago  Walter D Gonzalez  Aline De Lucas  Carlos Roberto Braga  Lucas Ramos Vieira  Tardelli Ronan Coelho Stekel  Marlos Rockenbach
Institution:1. Instituto Nacional de Pesquisas Espaciais, Sao Jose dos Campos, SP, Brazil;2. Instituto de Pesquisa e Desenvolvimento, Universidade do Vale do Paraíba, São José dos Campos, Brazil
Abstract:In this work, we present a study of the coronal mass ejection (CME) dynamics using LASCO coronagraph observations combined with in-situ ACE plasma and magnetic field data, covering a continuous period of time from January 1997 to April 2001, complemented by few extreme events observed in 2001 and 2003. We show, for the first time, that the CME expansion speed correlates very well with the travel time to 1 AU of the interplanetary ejecta (or ICMEs) associated with the CMEs, as well as with their preceding shocks. The events analyzed in this work are a subset of the events studied in Schwenn et al. (2005), from which only the CMEs associated with interplanetary ejecta (ICMEs) were selected. Three models to predict CME travel time to Earth, two proposed by Gopalswamy et al. (2001) and one by Schwenn et al. (2005), were used to characterize the dynamical behavior of this set of events. Extreme events occurred in 2001 and 2003 were used to test the prediction capability of the models regarding CMEs with very high LASCO C3 speeds.
Keywords:Coronal mass ejection  Interplanetary ejecta  CME travel time models  Space weather
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