In this paper we use the extensive HST data set obtained over two month-long campaigns in 2007 to determine the long term variability of the different components of Jupiter's auroras. We define three regions on the planet's disc, i.e. the main oval, the low latitude, and high latitude auroras, and extract the UV auroral power emitted therefrom. The high latitude region was also further divided into the polar inner and polar outer regions. We discuss the temporal variation of these parameters with reference to the auroral morphology and estimated solar wind conditions projected to Jupiter's orbit from data obtained at Earth orbit. We show that the auroral morphology was very different between the first and second campaigns. In the first ...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
peer reviewedJupiter displays the most powerful auroral emissions in our solar system, which result ...
Jupiter's aurora is the most powerful in the Solar System(1). It is powered largely by energy extrac...
The Hubble Space Telescope (HST) data set obtained over two campaigns in 2007 is used to determine t...
[1] The Hubble Space Telescope (HST) data set obtained over two campaigns in 2007 is used to determi...
The aurorae at Jupiter can be separated into four main components: the satellite footprints, the out...
Aurorae are the atmospheric signatures of energetic processes taking place far in the magnetosphere....
The main auroral emission at Jupiter generally forms a quasi-continuous curtain around each magnetic...
A large set of observations of Jupiter's ultraviolet aurora was collected with the Hubble Space Tele...
A large set of observations of Jupiter's ultraviolet aurora was collected with the Hubble Space Tele...
A large set of observations of Jupiter's ultraviolet aurora was collected with the Hubble Space Tele...
A large set of observations of Jupiter’s ultraviolet aurora was collected with the Hubble Space Tele...
[1] We examine the case of significant latitudinal shifts of the Jovian northern auroral emissions a...
The terawatts of ever-changing ultraviolet auroral emissions that are always observed with HST at bo...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
peer reviewedJupiter displays the most powerful auroral emissions in our solar system, which result ...
Jupiter's aurora is the most powerful in the Solar System(1). It is powered largely by energy extrac...
The Hubble Space Telescope (HST) data set obtained over two campaigns in 2007 is used to determine t...
[1] The Hubble Space Telescope (HST) data set obtained over two campaigns in 2007 is used to determi...
The aurorae at Jupiter can be separated into four main components: the satellite footprints, the out...
Aurorae are the atmospheric signatures of energetic processes taking place far in the magnetosphere....
The main auroral emission at Jupiter generally forms a quasi-continuous curtain around each magnetic...
A large set of observations of Jupiter's ultraviolet aurora was collected with the Hubble Space Tele...
A large set of observations of Jupiter's ultraviolet aurora was collected with the Hubble Space Tele...
A large set of observations of Jupiter's ultraviolet aurora was collected with the Hubble Space Tele...
A large set of observations of Jupiter’s ultraviolet aurora was collected with the Hubble Space Tele...
[1] We examine the case of significant latitudinal shifts of the Jovian northern auroral emissions a...
The terawatts of ever-changing ultraviolet auroral emissions that are always observed with HST at bo...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
peer reviewedJupiter displays the most powerful auroral emissions in our solar system, which result ...
Jupiter's aurora is the most powerful in the Solar System(1). It is powered largely by energy extrac...