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scopus(15)
Comparing turbulence in a Kelvin-Helmholtz instability region across the terrestrial magnetopause
ArticleAbstract: The properties of turbulence observed within the plasma originating from the magnetosheath and the mPalabras claves:MHD, plasmas, solar wind, TurbulenceAutores:Christian L. Vásconez, Federico Fraternale, Luca Sorriso-Valvo, Paulina Quijia, Perri S., Raffaele Marino, Stawarz J.E., Yordanova E.Fuentes:scopusCross and magnetic helicity in the outer heliosphere from Voyager 2 observations
ArticleAbstract: Plasma velocity and magnetic field measurements from the Voyager 2 mission are used to study solar wPalabras claves:Cross-helicity, Magnetic helicity, solar wind, Spectral Analysis, Voyager missionAutores:Federico Fraternale, Gallana L., Iovieno M., Opher M., Richardson J.D., Tordella D.Fuentes:scopusExploring turbulence from the Sun to the local interstellar medium: Current challenges and perspectives for future space missions
ReviewAbstract: Turbulence is ubiquitous in space plasmas. It is one of the most important subjects in heliosphericPalabras claves:Heliosphere, local interstellar medium (LISM), Magnetic fields, solar wind, Turbulence, waves and instabilitiesAutores:Chen T.Y., Federico Fraternale, Florinski V., Ghanbari K., Luca Sorriso-Valvo, Pogorelov N.V., Redfield S., Zhang M., Zhao L.L.Fuentes:scopusErratum: Comparing turbulence in a Kelvin-Helmholtz instability region across the terrestrial magnetopause (Monthly Notices of the Royal Astronomical Society DOI: 10.1093/mnras/stab319)
OtherAbstract: The original version of this manuscript included some portions of text from the first submitted versPalabras claves:Autores:Christian L. Vásconez, Federico Fraternale, Luca Sorriso-Valvo, Paulina Quijia, Perri S., Raffaele Marino, Stawarz J.E., Yordanova E.Fuentes:scopusSolar wind spectral analysis in heliosheath from Voyager 2 data
Conference ObjectAbstract: The solar wind is a supersonic flow of magnetized plasma. It is time-dependent on all scales and expPalabras claves:Autores:Federico Fraternale, Fosson S.M., Gallana L., Iovieno M., Magli E., Opher M., Richardson J.D., Tordella D.Fuentes:scopusThe Role of Electrons and Helium Atoms in Global Modeling of the Heliosphere
ArticleAbstract: We present a new three-dimensional, MHD-plasma/kinetic-neutrals model of the solar wind (SW) interacPalabras claves:Autores:Bera R.K., Federico Fraternale, Pogorelov N.V.Fuentes:scopusThe Structure of the Large-Scale Heliosphere as Seen by Current Models
ReviewAbstract: This review summarizes the current state of research aiming at a description of the global heliosphePalabras claves:Analytical, Heliosphere, Modeling, NumericalAutores:Dialynas K., Federico Fraternale, Galli A., Heerikhuisen J., Izmodenov V., Kleimann J., Kornbleuth M., Opher M., Pogorelov N.V.Fuentes:scopusThe structure of magnetic turbulence in the heliosheath region observed by Voyager 2 at 106 AU
Conference ObjectAbstract: It is currently believed that the turbulent fluctuations pervade the outermost heliosphere. TurbulenPalabras claves:Autores:Federico Fraternale, Pogorelov N.V., Richagrdson J.D., Tordella D.Fuentes:scopusTransport of interstellar neutral helium throughout the heliosphere
ArticleAbstract: A number of physical processes accompanying the solar wind interaction with the local interstellar mPalabras claves:Astrosphere interstellar medium interactions (106), Charge exchange ionization (2056), Heliopause (707), Heliosphere (711), Interstellar atomic gas (833), Interstellar medium (847), Interstellar plasma (851)Autores:Federico Fraternale, Heerikhuisen J., Pogorelov N.V.Fuentes:scopusTurbulence in the Outer Heliosphere
ReviewAbstract: The solar wind (SW) and local interstellar medium (LISM) are turbulent media. Their interaction is gPalabras claves:Heliosphere, Interstellar medium, solar wind, TurbulenceAutores:Adhikari L., Federico Fraternale, Fichtner H., Kim T.K., Kleimann J., Oughton S., Pogorelov N.V., Roytershteyn V., Smith C.W., Usmanov A.V., Zank G.P., Zhao L.L.Fuentes:scopus