Using a model of force balance in Saturn's disk-like magnetosphere, we show that variations in hot plasma pressure can change the magnetic field configuration. This effect changes (i) the location of the magnetopause, even at fixed solar wind dynamic pressure, and (ii) the magnetic mapping between ionosphere and disk. The model uses equatorial observations as a boundary condition—we test its predictions over a wide latitude range by comparison with a Cassini high-inclination orbit of magnetic field and hot plasma pressure data. We find reasonable agreement over time scales larger than the period of Saturn kilometric radiation (also known as the camshaft period)
The degree to which solar wind driving may affect Saturn's magnetosphere is not yet fully understood...
This thesis describes how the structure and dynamics of Saturn’s magnetopause can be explored by mod...
The rapidly rotating magnetospheres of the gas giant planets, Jupiter and Saturn, are natural labora...
This thesis explores how the con guration and dynamics of Saturn's magnetosphere are controlled by i...
The location of a planetary magnetopause is principally determined by the balance between solar wind...
The large‐scale structure of Saturn's magnetosphere is determined by internal and external factors, ...
The shape and location of a planetary magnetopause can be determined by balancing the solar wind dyn...
[1] The location and shape of a planetary magnetopause is principally determined by the dynamic pres...
The location of a planetary magnetopause is principally determined by the balance between solar wind...
Periodic variations have been observed in many field and particle properties in Saturn's magnetosphe...
Plasma rotation plays a large role in determining the size and shape of Saturn's disk-like magnetosp...
We present calculations of magnetic potential functions associated with the perturbation of Saturn's...
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...
The long-term statistical behavior of the large-scale structure of Saturn’s magnetosphere has been i...
The degree to which solar wind driving may affect Saturn's magnetosphere is not yet fully understood...
This thesis describes how the structure and dynamics of Saturn’s magnetopause can be explored by mod...
The rapidly rotating magnetospheres of the gas giant planets, Jupiter and Saturn, are natural labora...
This thesis explores how the con guration and dynamics of Saturn's magnetosphere are controlled by i...
The location of a planetary magnetopause is principally determined by the balance between solar wind...
The large‐scale structure of Saturn's magnetosphere is determined by internal and external factors, ...
The shape and location of a planetary magnetopause can be determined by balancing the solar wind dyn...
[1] The location and shape of a planetary magnetopause is principally determined by the dynamic pres...
The location of a planetary magnetopause is principally determined by the balance between solar wind...
Periodic variations have been observed in many field and particle properties in Saturn's magnetosphe...
Plasma rotation plays a large role in determining the size and shape of Saturn's disk-like magnetosp...
We present calculations of magnetic potential functions associated with the perturbation of Saturn's...
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...
The long-term statistical behavior of the large-scale structure of Saturn’s magnetosphere has been i...
The degree to which solar wind driving may affect Saturn's magnetosphere is not yet fully understood...
This thesis describes how the structure and dynamics of Saturn’s magnetopause can be explored by mod...
The rapidly rotating magnetospheres of the gas giant planets, Jupiter and Saturn, are natural labora...