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Authordc.contributor.authorLazar, M. 
Authordc.contributor.authorYoon, P. H. 
Authordc.contributor.authorLopez, R. A. 
Authordc.contributor.authorMoya Fuentes, Pablo 
Admission datedc.date.accessioned2018-07-30T15:41:24Z
Available datedc.date.available2018-07-30T15:41:24Z
Publication datedc.date.issued2018
Cita de ítemdc.identifier.citationJournal of Geophysical Research: Space Physics, 123, 6–19es_ES
Identifierdc.identifier.other10.1002/2017JA024759
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/150422
Abstractdc.description.abstractThe abundant reports on the existence of electromagnetic high-frequency fluctuations in space plasmas have increased the expectations that theoretical modeling may help understand their origins and implications (e.g., kinetic instabilities and dissipation). This paper presents an extended quasi-linear approach of the electromagnetic electron cyclotron instability in conditions typical for the solar wind, where the anisotropic electrons (T perpendicular to>T-vertical bar vertical bar) exhibit a dual distribution combining a bi-Maxwellian core and bi-Kappa halo. Involving both the core and halo populations, the instability is triggered by the cumulative effects of these components, mainly depending of their anisotropies. The instability is not very sensitive to the shape of halo distribution function conditioned in this case by the power index . This result seems to be a direct consequence of the low density of electron halo, which is assumed more dilute than the core component in conformity with the observations in the ecliptic. Quasi-linear time evolutions predicted by the theory are confirmed by the particle-in-cell simulations, which also suggest possible explanations for the inherent differences determined by theoretical constraints. These results provide premises for an advanced methodology to characterize, realistically, the electromagnetic electron cyclotron instability and its implication in the solar wind.es_ES
Patrocinadordc.description.sponsorshipFWO-Vlaanderen GOA2316N DFG-German Research Foundation SCHL 201/35-1 NSF AGS1550566 GFT, Inc. Ruhr University Research School PLUS - Germany's Excellence Initiative DFG GSC 98/3 Mercator fellowship - Deutsche Forschungsgemeinschaft Schl 201/31-1 CONICyT 74160076 CONICyT PIA project ACT1405 CONICyT through FONDECyT 11150055es_ES
Lenguagedc.language.isoenes_ES
Publisherdc.publisherAmerican Geophysical Uniones_ES
Type of licensedc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile*
Link to Licensedc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/*
Sourcedc.sourceJournal of Geophysical Research: Space Physicses_ES
Títulodc.titleElectromagnetic electron cyclotron instability in the solar windes_ES
Document typedc.typeArtículo de revista
Catalogueruchile.catalogadortjnes_ES
Indexationuchile.indexArtículo de publicación ISIes_ES


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Attribution-NonCommercial-NoDerivs 3.0 Chile
Except where otherwise noted, this item's license is described as Attribution-NonCommercial-NoDerivs 3.0 Chile