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Coherent Structures and Spectral Energy Transfer in Turbulent Plasma: A Space-Filter Approach
ArticleAbstract: Plasma turbulence at scales of the order of the ion inertial length is mediated by several mechanismPalabras claves:Autores:Califano F., Camporeale E., Luca Sorriso-Valvo, Retinò A.Fuentes:scopusEvolution of turbulence in the Kelvin–Helmholtz instability in the terrestrial magnetopause
ArticleAbstract: The dynamics occurring at the terrestrial magnetopause are investigated by using Geotail and THEMISPalabras claves:Intermittency, Kelvin–Helmholtz instability, Magnetosheath, TurbulenceAutores:Di Mare F., Hasegawa H., Luca Sorriso-Valvo, Malara F., Retinò A.Fuentes:scopusEditorial: New challenges in space plasma physics: Open questions and future mission concepts
OtherAbstract:Palabras claves:dissipation processes, in situ observations, magnetic reconnection, Numerical simulations, plasma turbulence, space physicsAutores:Chen C.H.K., Luca Sorriso-Valvo, Retinò A., Verscharen D.Fuentes:scopusEIDOSCOPE: Particle acceleration at plasma boundaries
ArticleAbstract: We describe the mission concept of how ESA can make a major contribution to the Japanese Canadian muPalabras claves:Cosmic vision, Multi-scale coupling in plasmas, Particle acceleration, Space plasmasAutores:Andersson G., Bale S.D., Cully C.M., de Keyser J., Fujimoto M., Grahn S., Haaland S., Ji H., Khotyaintsev Y.V., Lavraud B., Lazarian A., Luca Sorriso-Valvo, Mann I.R., Nakamura R., Nakamura T.K.M., Narita Y., Retinò A., Sahraoui F., Schekochihin A., Schwartz S.J., Shinohara I., Vaivads A.Fuentes:scopusDifferential kinetic dynamics and heating of ions in the turbulent solar wind
ArticleAbstract: The solar wind plasma is a fully ionized and turbulent gas ejected by the outer layers of the solarPalabras claves:plasma heating, solar wind, space missions, TurbulenceAutores:Brienza D., Bruno R., Consolini G., de Keyser J., De Marco R., Lavraud B., Luca Sorriso-Valvo, Marcucci M.F., Perrone D., Pezzi O., Retinò A., Salatti M., Servidio S., Stabile S., Vaivads A., Valentini F., Veltri P.Fuentes:scopusICARUS: in-situ studies of the solar corona beyond Parker Solar Probe and Solar Orbiter
ArticleAbstract: The primary scientific goal of ICARUS (Investigation of Coronal AcceleRation and heating of solar wiPalabras claves:Heliophysics, Solar atmosphere, solar wind, Space missionAutores:Agapitov O., Balat-Pichelin M., Bale S.D., Balikhin M., Baumjohann W., Berthomier M., Bruno R., Cranmer S.R., de Pontieu B., Dudok De Wit T., Eastwood J., Erdelyi R., Ergun R., Fedorov A., Fedun V., Ganushkina N., Greco A., Harra L.K., Henri P., Horbury T.S., Hudson H., Kasper J., Khotyaintsev Y.V., Krasnoselskikh V., Kretzschmar M., Krucker S., Kucharek H., Langevin Y., Lavraud B., Lebreton J.P., Lepri S., Liemohn M., Louarn P., Luca Sorriso-Valvo, Maksimovic M., Meneses D.d.S., Moebius E., Mozer F., Nemecek Z., Panasenco O., Retinò A., Šafránková J., Scudder J., Servidio S., Souček J., Szabo A., Tsurutani B.T., Vaivads A., Vekstein G., Velli M.C., Vörös Z., Walker S., Zaqarashvili T., Zimbardo G.Fuentes:scopusParticle energization in space plasmas: towards a multi-point, multi-scale plasma observatory
ArticleAbstract: This White Paper outlines the importance of addressing the fundamental science theme “How are chargePalabras claves:Astrophysical Plasmas, Heliosphere, Particle energization, Scale coupling, Space plasmas, Spacecraft constellationsAutores:Angelopoulos V., Blasi P., Burch J.L., Dai L., de Keyser J., Dunlop M., Eastwood J.P., Fu H., Haaland S., Hoshino M., Johlander A., Kepko L., Khotyaintsev Y.V., Kucharek H., Lapenta G., Lavraud B., Le Contel O., Luca Sorriso-Valvo, Malandraki O.E., Marcucci M.F., Matthaeus W.H., McWilliams K., Petrukovich A., Pinçon J.L., Plaschke F., Retinò A., Saito Y., Vainio R., Vaivads A., Wimmer-Schweingruber R.F.Fuentes:scopusTurbulence Heating ObserveR - Satellite mission proposal
ArticleAbstract: The Universe is permeated by hot, turbulent, magnetized plasmas. Turbulent plasma is a major constitPalabras claves:plasma heating, plasma properties, Space plasma physicsAutores:Alexandrova O., André M., Bale S.D., Balikhin M., Burgess D., Camporeale E., Caprioli D., Chen C.H.K., Clacey E., Cully C.M., de Keyser J., Eastwood J.P., Eriksson S., Escoubet C.P., Fazakerley A.N., Goldstein M.L., Graham D.B., Haaland S., Hoshino M., Ji H., Karimabadi H., Khotyaintsev Y.V., Kucharek H., Lavraud B., Luca Sorriso-Valvo, Marcucci M.F., Matthaeus W.H., Moore T.E., Nakamura R., Narita Y., Nemecek Z., Norgren C., Opgenoorth H., Palmroth M., Perrone D., Pinçon J.L., Rathsman P., Retinò A., Rothkaehl H., Sahraoui F., Servidio S., Souček J., Vainio R., Vaivads A., Valentini F., Vörös Z., Wimmer-Schweingruber R.F.Fuentes:scopusTurbulence-Driven Ion Beams in the Magnetospheric Kelvin-Helmholtz Instability
ArticleAbstract: The description of the local turbulent energy transfer and the high-resolution ion distributions meaPalabras claves:Autores:Burch J.L., Carbone V., Catapano F., Coburn J.T., Di Mare F., Federico Fraternale, Giles B.L., Greco A., Khotyaintsev Y.V., Le Contel O., Luca Sorriso-Valvo, Malara F., Moore T.E., Panebianco V., Perri S., Perrone D., Pezzi O., Raffaele Marino, Retinò A., Roberts O.W., Russell C.T., Torbert R.B., Valentini F., Veltri P.Fuentes:scopusTwo-fluid numerical simulations of turbulence inside Kelvin-Helmholtz vortices: Intermittency and reconnecting current sheets
ArticleAbstract: The turbulence developing inside Kelvin-Helmholtz vortices has been studied using a two-fluid numeriPalabras claves:Autores:Califano F., Chasapis A., Henri P., Luca Sorriso-Valvo, Retinò A., Rezeau L., Rossi C., Servidio S., Valentini F.Fuentes:scopus