We demonstrate that under some magnetospheric conditions protons and oxygen ions are accelerated once per Saturn magnetosphere rotation, at a preferred local time between midnight and dawn. Although enhancements in energetic neutral atom (ENA) emission may in general occur at any local time and at any time in a Saturn rotation, those enhancements that exhibit a recurrence at a period very close to Saturn's rotation period usually recur in the same magnetospheric location. We suggest that these events result from current sheet acceleration in the 15-20 Rs range, probably associated with reconnection and plasmoid formation in Saturn's magnetotail. Simultaneous auroral observations by the Hubble Space Telescope (HST) and the Cassini Ultraviole...
Saturn's aurora represents the ionospheric response to plasma processes occurring in the planet's en...
Recently, rotationally driven magnetic reconnection was first discovered in Saturn's dayside magneto...
We present Cassini auroral observations obtained on 11 November 2016 with the Ultraviolet Imaging Sp...
peer reviewedWe demonstrate that under some magnetospheric conditions protons and oxygen ions are ac...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
peer reviewedStunning aurorae are mainly produced when accelerated electrons travel along magnetic f...
Stunning aurorae are mainly produced when accelerated electrons travel along magnetic field lines to...
We present high-resolution Cassini/UVIS (Ultraviolet Imaging Spectrograph) observations of Saturn’s ...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
peer reviewedAlthough auroral emissions at giant planets have been observed for decades, the physica...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
We present observations of significant dynamics within two UV auroral storms observed on Saturn usin...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
[1] The first extended series of observations of Saturn's auroral emissions, undertaken by the Hubbl...
Planetary magnetospheres receive plasma and energy from the Sun or moons of planets and consequently...
Saturn's aurora represents the ionospheric response to plasma processes occurring in the planet's en...
Recently, rotationally driven magnetic reconnection was first discovered in Saturn's dayside magneto...
We present Cassini auroral observations obtained on 11 November 2016 with the Ultraviolet Imaging Sp...
peer reviewedWe demonstrate that under some magnetospheric conditions protons and oxygen ions are ac...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
peer reviewedStunning aurorae are mainly produced when accelerated electrons travel along magnetic f...
Stunning aurorae are mainly produced when accelerated electrons travel along magnetic field lines to...
We present high-resolution Cassini/UVIS (Ultraviolet Imaging Spectrograph) observations of Saturn’s ...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
peer reviewedAlthough auroral emissions at giant planets have been observed for decades, the physica...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
We present observations of significant dynamics within two UV auroral storms observed on Saturn usin...
Saturn's morningside auroras consist mainly of rotating, transient emission patches, following perio...
[1] The first extended series of observations of Saturn's auroral emissions, undertaken by the Hubbl...
Planetary magnetospheres receive plasma and energy from the Sun or moons of planets and consequently...
Saturn's aurora represents the ionospheric response to plasma processes occurring in the planet's en...
Recently, rotationally driven magnetic reconnection was first discovered in Saturn's dayside magneto...
We present Cassini auroral observations obtained on 11 November 2016 with the Ultraviolet Imaging Sp...