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タイトルTracking the Momentum Flux of a CME and Quantifying Its Influence on Geomagnetically Induced Currents at Earth
本文(外部サイト)http://hdl.handle.net/2060/20140010895
著者(英)Vourlidas, A.; Nieves-Chinchilla, T.; Pulkkinen, A.; Lavraud, B.; Savani, N. P.; Owens, M. J.
著者所属(英)NASA Goddard Space Flight Center
発行日2013-05-01
言語eng
内容記述We investigate a coronal mass ejection (CME) propagating toward Earth on 29 March 2011. This event is specifically chosen for its predominately northward directed magnetic field, so that the influence from the momentum flux onto Earth can be isolated. We focus our study on understanding how a small Earth-directed segment propagates. Mass images are created from the white-light cameras onboard STEREO which are also converted into mass height-time maps (mass J-maps). The mass tracks on these J-maps correspond to the sheath region between the CME and its associated shockfront as detected by in situ measurements at L1. A time series of mass measurements from the STEREOCOR-2A instrument is made along the Earth propagation direction. Qualitatively, this mass time series shows a remarkable resemblance to the L1 in situ density series. The in situ measurements are used as inputs into a three-dimensional (3-D) magnetospheric space weather simulation from the Community Coordinated Modeling Center. These simulations display a sudden compression of the magnetosphere from the large momentum flux at the leading edge of the CME, and predictions are made for the time derivative of the magnetic field (dBdt) on the ground. The predicted dBdt values were then compared with the observations from specific equatorially located ground stations and showed notable similarity. This study of the momentum of a CME from the Sun down to its influence on magnetic ground stations on Earth is presented as a preliminary proof of concept, such that future attempts may try to use remote sensing to create density and velocity time series as inputs to magnetospheric simulations.
NASA分類Solar Physics
レポートNOGSFC-E-DAA-TN15117
権利Copyright, Distribution as joint owner in the copyright


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