On 21–22 April 2013, during a coordinated auroral observing campaign, instruments onboard Cassini and the Hubble Space Telescope observed Saturn’s aurora while Cassini traversed Saturn’s high latitude auroral field lines. Signatures of upward and downward field-aligned currents were detected in the nightside magnetosphere in the magnetic field and plasma measurements. The location of the upward current corresponded to the bright ultraviolet auroral arc seen in the auroral images, and the downward current region was located poleward of the upward current in an aurorally dark region. Within the polar cap magnetic field and plasma fluctuations were identified with periods of ∼20 and ∼60 min. The northern and southern auroral ovals were observe...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
The Hubble Space Telescope imaged Saturn's northern ultraviolet auroras during February–June 2014, w...
On 21–22 April 2013, during a coordinated auroral observing campaign, instruments onboard Cassini an...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
Cassini's 2017 proximal orbits provided the opportunity to examine the auroral field-aligned current...
The first extended series of observations of Saturn's auroral emissions, undertaken by the Hubble Sp...
This thesis principally studies the effects of magnetic field perturbations, and their associated la...
[1] During the periapsis pass of Revolution 89, specifically on day 291 of 2008, the Cassini spacecr...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
During the periapsis pass of Revolution 89, specifically on day 291 of 2008, the Cassini spacecraft ...
Saturn’s dayside aurora displays a number of morphological features poleward of the main emission re...
In recent years we have benefitted greatly from the first in-orbit multi-wavelength images of Saturn...
We examine the azimuthal magnetic field signatures associated with Saturn's northern hemisphere auro...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
The Hubble Space Telescope imaged Saturn's northern ultraviolet auroras during February–June 2014, w...
On 21–22 April 2013, during a coordinated auroral observing campaign, instruments onboard Cassini an...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
Cassini's 2017 proximal orbits provided the opportunity to examine the auroral field-aligned current...
The first extended series of observations of Saturn's auroral emissions, undertaken by the Hubble Sp...
This thesis principally studies the effects of magnetic field perturbations, and their associated la...
[1] During the periapsis pass of Revolution 89, specifically on day 291 of 2008, the Cassini spacecr...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
During the periapsis pass of Revolution 89, specifically on day 291 of 2008, the Cassini spacecraft ...
Saturn’s dayside aurora displays a number of morphological features poleward of the main emission re...
In recent years we have benefitted greatly from the first in-orbit multi-wavelength images of Saturn...
We examine the azimuthal magnetic field signatures associated with Saturn's northern hemisphere auro...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
On 15 September 2017 the Cassini spacecraft plunged into Saturn's atmosphere after 13 years of succe...
The Hubble Space Telescope imaged Saturn's northern ultraviolet auroras during February–June 2014, w...