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Spatial Distribution of the Pedersen Conductance in the Jovian Aurora From Juno‐UVS Spectral Images

Jean‐Claude Gérard, L. Gkouvelis, Bertrand Bonfond, Denis Grodent, G. R. Gladstone, Vincent Hue, T. K. Greathouse, M. H. Versteeg, Joshua A. Kammer, Michel Blanc

2020Journal of Geophysical Research Space Physics34 citationsDOIOpen Access PDF

Abstract

Abstract Ionospheric conductivity perpendicular to the magnetic field plays a crucial role in the electrical coupling between planetary magnetospheres and ionospheres. At Jupiter, it controls the flow of ionospheric current from above and the closure of the magnetosphere‐ionosphere circuit in the ionosphere. We use multispectral images collected with the Ultraviolet Spectral (UVS) imager on board Juno to estimate the two‐dimensional distribution of the electron energy flux and characteristic energy. These values are fed to an ionospheric model describing the generation and loss of different ion species, to calculate the auroral Pedersen conductivity. The vertical distributions of H 3 + , hydrocarbon ions, and electrons are calculated at steady state for each UVS pixel to characterize the spatial distribution of electrical conductance in the auroral region. We find that the main contribution to the Pedersen conductance stems from collisions of H 3 + and heavier ions with H 2 . However, hydrocarbon ions contribute as much as 50% to Σ p when the auroral electrons penetrate below the homopause. The largest values are usually associated with the bright main emission, the Io auroral footprint and occasional bright emissions at high latitude. We present examples of maps for both hemispheres based on Juno‐UVS images, with Pedersen conductance ranging from less than 0.1 to a few mhos.

Topics & Concepts

IonosphereJovianPhysicsIonElectronMagnetosphereConductanceFlux (metallurgy)Jupiter (rocket family)GeophysicsAtmospheric sciencesComputational physicsAtomic physicsPlasmaAstrophysicsMaterials scienceAstronomyCondensed matter physicsNuclear physicsPlanetSpace ShuttleSaturnMetallurgyQuantum mechanicsAstro and Planetary ScienceSolar and Space Plasma DynamicsGeomagnetism and Paleomagnetism Studies
Spatial Distribution of the Pedersen Conductance in the Jovian Aurora From Juno‐UVS Spectral Images | Litcius