We present a bulk ion flow map from the nightside, equatorial region of Saturn's magnetosphere derived from the Cassini CAPS ion mass spectrometer data. The map clearly demonstrates the dominance of corotation flow over radial flow and suggests that the flux tubes sampled are still closed and attached to the planet up to distances of 50RS. The plasma characteristics in the near-midnight region are described and indicate a transition between the region of the magnetosphere containing plasma on closed drift paths and that containing flux tubes which may not complete a full rotation around the planet. Data from the electron spectrometer reveal two plasma states of high and low density. These are attributed either to the sampling of mass-loaded...
The Cassini spacecraft orbited Saturn from 2004 to 2017, and in 2006 it started exploring the deep m...
Saturn's magnetosphere is populated by plasma created from neutrals ejected by the moon Enceladus. T...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet...
We present a bulk ion flow map from the nightside, equatorial region of Saturn's magnetosphere deriv...
Studies of Saturn's magnetosphere with the Cassini mission have established the importance of Encela...
It is well accepted that cold plasma sourced by Enceladus is ultimately lost to the solar wind, whil...
We investigate the average configuration and structure of Saturn's magnetosphere in the nightside eq...
We investigate the average configuration and structure of Saturn's magnetosphere in the nightside eq...
Cassini observations during a rapid, high‐latitude, dawnside pass from Saturn's lobe to inner magnet...
The giant‐planet magnetodiscs are shaped by the radial transport of plasma originating in the inner ...
We investigate the average configuration and structure of Saturn’s magnetosphere in the nightside eq...
The plasma properties, especially the flow parameters, obtained from numerical integration of Cassin...
The Cassini mission offered a unique opportunity to study the global characteristics of Saturn and i...
Observations of Saturn's ultraviolet and infrared aurora show structures that, when traced along the...
Between April and the end of its mission on 15 September, Cassini executed a series of 22 very simil...
The Cassini spacecraft orbited Saturn from 2004 to 2017, and in 2006 it started exploring the deep m...
Saturn's magnetosphere is populated by plasma created from neutrals ejected by the moon Enceladus. T...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet...
We present a bulk ion flow map from the nightside, equatorial region of Saturn's magnetosphere deriv...
Studies of Saturn's magnetosphere with the Cassini mission have established the importance of Encela...
It is well accepted that cold plasma sourced by Enceladus is ultimately lost to the solar wind, whil...
We investigate the average configuration and structure of Saturn's magnetosphere in the nightside eq...
We investigate the average configuration and structure of Saturn's magnetosphere in the nightside eq...
Cassini observations during a rapid, high‐latitude, dawnside pass from Saturn's lobe to inner magnet...
The giant‐planet magnetodiscs are shaped by the radial transport of plasma originating in the inner ...
We investigate the average configuration and structure of Saturn’s magnetosphere in the nightside eq...
The plasma properties, especially the flow parameters, obtained from numerical integration of Cassin...
The Cassini mission offered a unique opportunity to study the global characteristics of Saturn and i...
Observations of Saturn's ultraviolet and infrared aurora show structures that, when traced along the...
Between April and the end of its mission on 15 September, Cassini executed a series of 22 very simil...
The Cassini spacecraft orbited Saturn from 2004 to 2017, and in 2006 it started exploring the deep m...
Saturn's magnetosphere is populated by plasma created from neutrals ejected by the moon Enceladus. T...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet...