Context. We discuss the origin of quasi-harmonic emission bands that have been observed in the dynamic spectra of the Jovian decameter emission. Aims. We aim to show that the interpretation of the observed structure can be based on the effect of double plasma resonance (DPR) at ion cyclotron harmonics. Methods. According to the proposed model, in the extended source in the upper ionosphere of Jupiter, where the DPR condition is satisfied for one of the ion cyclotron frequency harmonics, the ion cyclotron waves are effectively excited at the frequency of the lower hybrid resonance. The observed electromagnetic radiation with a quasi-harmonic structure arises due to scattering of ion cyclotron waves by supra-thermal electrons. Results. Based ...
Radio emissions from the Io-Jupiter electrodynamic circuit are structured in discrete bursts, quasi-...
Jupiter, the largest planet in the solar system, is not only an emitter of thermal radiation like an...
International audienceand the extended Galileo orbital mission provided a unique opportunity to obta...
International audienceWe report the systematic analysis of zebra-like fine spectral structures in de...
International audienceJupiter's radio emissions are dominated in intensity by decametric radio emiss...
Several complex uncommon zebra patterns in meter/ decimeter and microwave range are shown. It is dif...
Context. Radio bursts with fine structures are used in diagnostics of solar flare plasmas, of which ...
Section A. Radio Emissions From Jupiter. The thesis begins with a detailed review of the observed ...
International audienceUsing Juno plasma and wave and magnetic observations (JADE and Waves and MAG i...
In a previous work, we developed a model allowing a theoretical location of the Io‐controlled decame...
We report the first systematic analysis of zebra–like fine spectral structures in the decametric fre...
The new mechanism for the formation of a fine structure in the dynamic spectra of the Jovian decamet...
International audienceWe report the first systematic analysis of zebra-like fine spectral structures...
Radio emissions from the Io-Jupiter electrodynamic circuit are structured in discrete bursts, quasi-...
Jupiter, the largest planet in the solar system, is not only an emitter of thermal radiation like an...
International audienceand the extended Galileo orbital mission provided a unique opportunity to obta...
International audienceWe report the systematic analysis of zebra-like fine spectral structures in de...
International audienceJupiter's radio emissions are dominated in intensity by decametric radio emiss...
Several complex uncommon zebra patterns in meter/ decimeter and microwave range are shown. It is dif...
Context. Radio bursts with fine structures are used in diagnostics of solar flare plasmas, of which ...
Section A. Radio Emissions From Jupiter. The thesis begins with a detailed review of the observed ...
International audienceUsing Juno plasma and wave and magnetic observations (JADE and Waves and MAG i...
In a previous work, we developed a model allowing a theoretical location of the Io‐controlled decame...
We report the first systematic analysis of zebra–like fine spectral structures in the decametric fre...
The new mechanism for the formation of a fine structure in the dynamic spectra of the Jovian decamet...
International audienceWe report the first systematic analysis of zebra-like fine spectral structures...
Radio emissions from the Io-Jupiter electrodynamic circuit are structured in discrete bursts, quasi-...
Jupiter, the largest planet in the solar system, is not only an emitter of thermal radiation like an...
International audienceand the extended Galileo orbital mission provided a unique opportunity to obta...