The long-term statistical behavior of the large-scale structure of Saturn’s magnetosphere has been investigated. Established statistical techniques for Jupiter have been applied to the kronian system, employing Cassini magnetometer data and a new empirical shape model of the magnetopause based on these data. The resulting distribution of standoff distance RMP for Saturn, covering a time interval of 400 days, is welldescribed by a ‘‘dual’’ or ‘‘bimodal’’ model—the sum of two normal distributions with different means at 22 and 27 planetary radii. We have made a comparison between the dual model’s prediction for the probability distribution of solar wind dynamic pressure at Saturn with a sequence of observations from the Cassini Plasma Spec...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94588/1/grl19801.pd
The shape and location of a planetary magnetopause can be determined by balancing the solar wind dyn...
The location of a planetary magnetopause is principally determined by the balance between solar wind...
The long-term statistical behavior of the large-scale structure of Saturn's magnetosphere has been i...
The long-term statistical behavior of the large-scale structure of Saturn’s magnetosphere has been i...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet ...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet...
We use magnetopause crossings of the Cassini spacecraft to study the response of Saturn's magnetosph...
This thesis describes how the structure and dynamics of Saturn’s magnetopause can be explored by mod...
Probability distributions for the location of the Saturnian bow shock and magnetopause have been der...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95429/1/jgra19967.pd
We quantify the magnetospheric stress state of Saturn, revealing the nature of the planetary environ...
The Cassini mission offered a unique opportunity to study the global characteristics of Saturn and i...
Plasma rotation plays a large role in determining the size and shape of Saturn's disk-like magnetosp...
Swept forward field is the term given to configurations of magnetic field wherein the field lines de...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94588/1/grl19801.pd
The shape and location of a planetary magnetopause can be determined by balancing the solar wind dyn...
The location of a planetary magnetopause is principally determined by the balance between solar wind...
The long-term statistical behavior of the large-scale structure of Saturn's magnetosphere has been i...
The long-term statistical behavior of the large-scale structure of Saturn’s magnetosphere has been i...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet ...
Saturn’s magnetic field acts as an obstacle to solar wind flow, deflecting plasma around the planet...
We use magnetopause crossings of the Cassini spacecraft to study the response of Saturn's magnetosph...
This thesis describes how the structure and dynamics of Saturn’s magnetopause can be explored by mod...
Probability distributions for the location of the Saturnian bow shock and magnetopause have been der...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95429/1/jgra19967.pd
We quantify the magnetospheric stress state of Saturn, revealing the nature of the planetary environ...
The Cassini mission offered a unique opportunity to study the global characteristics of Saturn and i...
Plasma rotation plays a large role in determining the size and shape of Saturn's disk-like magnetosp...
Swept forward field is the term given to configurations of magnetic field wherein the field lines de...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94588/1/grl19801.pd
The shape and location of a planetary magnetopause can be determined by balancing the solar wind dyn...
The location of a planetary magnetopause is principally determined by the balance between solar wind...