Emission and propagation of Saturn kilometric radiation: Magnetoionic modes, beaming pattern, and polarization state - Archive ouverte HAL Accéder directement au contenu
Pré-Publication, Document De Travail Année : 2011

Emission and propagation of Saturn kilometric radiation: Magnetoionic modes, beaming pattern, and polarization state

Résumé

The Cassini mission crossed the source region of the Saturn kilometric radiation (SKR) on 17 October 2008. On this occasion, the Radio and Plasma Wave Science (RPWS) experiment detected both local and distant radio sources, while plasma parameters were measured in situ by the magnetometer and the Cassini Plasma Spectrometer. A goniopolarimetric inversion was applied to RPWS three-antenna electric measurements to determine the wave vector k and the complete state of polarization of detected waves. We identify broadband extraordinary (X) mode as well as narrowband ordinary (O) mode SKR at low frequencies. Within the source region, SKR is emitted just above the X mode cutoff frequency in a hot plasma, with a typical electron-to-wave energy conversion efficiency of ˜1% (2% peak). The knowledge of the k vector is then used to derive the locus of SKR sources in the kronian magnetosphere, which shows X and O components emanating from the same regions. We also compute the associated beaming angle at the source θ‧ = (k, -B) either from (1) in situ measurements or a model of the magnetic field vector (for local to distant sources) or (2) polarization measurements (for local sources). Obtained results, similar for both modes, suggest quasi-perpendicular emission for local sources, whereas the beaming pattern of distant sources appears as a hollow cone with a frequency-dependent constant aperture angle: θ‧ = 75° ± 15° below 300 kHz, decreasing at higher frequencies to reach θ‧ (1000 kHz) = 50° ± 25°. Finally, we investigate quantitatively the SKR polarization state, observed to be strongly elliptical at the source, and quasi-purely circular for sources located beyond approximately two kronian radii. We show that conditions of weak mode coupling are achieved along the raypath, under which the magnetoionic theory satisfactorily describes the evolution of the observed polarization. These results are analyzed comparatively with the auroral kilometric radiation at Earth.

Dates et versions

hal-00845399 , version 1 (17-07-2013)

Identifiants

Citer

L. Lamy, B. Cecconi, P. Zarka, Patrick Canu, P. Schippers, et al.. Emission and propagation of Saturn kilometric radiation: Magnetoionic modes, beaming pattern, and polarization state. 2011. ⟨hal-00845399⟩
466 Consultations
0 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More