Plasmaspheric hiss is one of the most important plasma waves in the Earth's magnetosphere to contribute to radiation belt dynamics by pitch-angle scattering energetic electrons via wave-particle interactions. There is growing evidence that the temporal and spatial variability of wave-particle interactions are important factors in the construction of diffusion-based models of the radiation belts. Hiss amplitudes are thought to be coherent across large distances and on long timescales inside the plasmapause, which means that hiss can act on radiation belt electrons throughout their drift trajectories for many hours. In this study, we investigate both the spatial and temporal coherence of plasmaspheric hiss between the two Van Allen Probes fro...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
Plasmaspheric hiss is one of the most important plasma waves in the Earth's magnetosphere to contrib...
Plasmaspheric hiss plays an important role in controlling the overall structure and dynamics of the ...
Plasmaspheric hiss is known to play an important role in controlling the overall structure and dynam...
Plasmaspheric hiss plays an important role in controlling the overall structure and dynamics of the ...
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wa...
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wa...
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wa...
Chorus waves outside the plasmapause influence the Earth's radiation belt dynamics by interacting wi...
Van Allen Probes observations are used to statistically investigate plasmaspheric hiss wave properti...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
Plasmaspheric hiss (PH) is a band-limited, incoherent whistler mode emission found predominantly in ...
Abstract Plasmaspheric hiss is one of the important plasma waves controlling radiation belt dynamics...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
Plasmaspheric hiss is one of the most important plasma waves in the Earth's magnetosphere to contrib...
Plasmaspheric hiss plays an important role in controlling the overall structure and dynamics of the ...
Plasmaspheric hiss is known to play an important role in controlling the overall structure and dynam...
Plasmaspheric hiss plays an important role in controlling the overall structure and dynamics of the ...
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wa...
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wa...
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wa...
Chorus waves outside the plasmapause influence the Earth's radiation belt dynamics by interacting wi...
Van Allen Probes observations are used to statistically investigate plasmaspheric hiss wave properti...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
Plasmaspheric hiss (PH) is a band-limited, incoherent whistler mode emission found predominantly in ...
Abstract Plasmaspheric hiss is one of the important plasma waves controlling radiation belt dynamics...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...
International audienceThe spatial localization of whistler mode waves, determined by their generatio...