Cassini observations of the variation of Saturn’s ring current parameters with system size
نویسندگان
چکیده
[1] We have examined residual magnetic field vectors observed in Saturn’s magnetosphere during the first 2 years of the Cassini mission and have fit them to a simple axisymmetric model of the ring current in the middle magnetosphere. We then examine the variations of the ring current parameters with size of the magnetosphere. In addition, we obtain secondary parameters, including the value of the axial field at the center of the ring (equivalently Saturn’s Dst) Bz0, the total current IT flowing in the modeled ring current region, and the ratio of the ring current magnetic moment relative to the magnetic moment of Saturn’s dipole field, kRC. Results show that the derived parameters increase significantly with system size, due principally to the increasing radius of the outer edge of the ring. We consider the implications of the response of the magnetic moment of the ring current to changing magnetospheric size, by theoretical consideration of the magnetic moment of individual particles in the ring current. The strong positive correlation of the ring current magnetic moment with system size suggests a system in which the ring current is dominated by inertia currents, rather than by thermal effects as in the case of the Earth, with magnetosphere-ionosphere coupling maintaining the angular velocity of the plasma. The variations of Saturn’s ring current parameters with system size found in this study are shown to be closely compatible with the size variations in response to the solar wind dynamic pressure recently determined from Cassini data.
منابع مشابه
Mass of Saturn’s magnetodisc: Cassini observations
[1] Saturn’s ring current was observed by Pioneer 11 and the two Voyager spacecraft to extend 8–16 RS in the equatorial plane and appeared to be driven by stress balance with the centrifugal force. We present Cassini observations that show thin current sheets on the dawn flank of Saturn’s magnetosphere, symptomatic of the formation of a magnetodisc. We show that the centrifugal force is the dom...
متن کاملCassini observations of planetary-period magnetic field oscillations in Saturn’s magnetosphere: Doppler shifts and phase motion
[1] Cassini magnetic field observations show that few-nT oscillations near the planetary rotation period, first observed in Pioneer-11 and Voyager-1 and -2 fly-by data, are essentially ubiquitous in Saturn’s magnetosphere, though their character differs between the quasi-dipolar ring current region and the dawn tail. Examination of data from the ringcurrent region shows, however, that the obser...
متن کاملEffects of ring shadowing on the detection of electrostatic discharges at Saturn
[1] A long-standing discrepancy exists in determinations from observations and modeling of the diurnal variation of the peak electron density of Saturn’s ionosphere. Using a new Saturn-Thermosphere-Ionosphere-Model (STIM), we examine the suggestion by Burns et al. (1983) that Saturn’s rings shadow its ionosphere causing radio penetration ‘‘holes’’, thereby allowing lightning-induced radio signa...
متن کاملSurfaces and atmospheres of the outer planets, their satellites and ring systems
This special issue of PSS represents select articles based on research presented during the PS3.02 and PS3.03 sessions of the European Geosciences Union (EGU) meeting in Vienna, Austria, from 2 to 7 April 2006, and includes updates since the meeting. These EGU sessions focused on recent observations and models on the atmospheres and surfaces of the giant planets and their satellites, as well as...
متن کاملSimulations of the Dynamical and Light-scattering Behavior of Saturn’s Rings and the Derivation of Ring Particle and Disk Properties
We study the light-scattering behavior of Saturn’s rings for the purpose of deducing the nature and distribution of the particles comprising them and the collisional and dynamical environments in which they reside. To this end, we have developed two complex numerical codes to apply to this objective. One is a geometric ray-tracing code that scatters rays from a light source at an arbitrary illu...
متن کامل