The ice giant planets provide some of the most interesting natural laboratories for studying the influence of large obliquities, rapid rotation, highly asymmetric magnetic fields and wide-ranging Alfvénic and sonic Mach numbers on magnetospheric processes. The geometries of the solar wind-magnetosphere interaction at the ice giants vary dramatically on diurnal timescales due to the large tilt of the magnetic axis relative to each planet's rotational axis and the apparent off-centred nature of the magnetic field. There is also a seasonal effect on this interaction geometry due to the large obliquity of each planet (especially Uranus). With in situ observations at Uranus and Neptune limited to a single encounter by the Voyager 2 spacecraft, a...
Magnetospheric and plasma science studies at Saturn offer a unique opportunity to explore in-depth t...
The interaction of the solar wind with the magnetospheres of the giant planets is different from tha...
Identifying and quantifying the different drivers of energy flow through a planetarymagnetosphere is ...
Uranus and Neptune are the least-explored planets in our Solar System. This paper summarizes mysteri...
Uranus and Neptune are the least-explored planets in our Solar System. This paper summarizes mysteri...
Summary: The data and figures contained in this dataset are supporting materials for the paper refer...
Thesis (Ph.D.)--University of Washington, 2018With the explosion of exoplanetary discoveries, the qu...
The Sun comprises 99.9% of the solar system mass so it is expected that Sun terrestrial planet inter...
The magnetosphere of Uranus is far from well known since there was only one fly-by measurement in hi...
The five qualitatively different types of magnetism that a planet body can exhibit are outlined. Pot...
The nature of the solar wind interaction with the giant outer planets, Jupiter and Saturn, has not b...
Ice-giant-sized planets are the most common type of observed exoplanet, yet the two ice giants in ou...
International audienceThe ice giants Uranus and Neptune are the least understood class of planets in...
Ice-giant-sized planets are the most common type of observed exoplanet, yet the two ice giants in ou...
The international planetary science community met in London in January 2020, united in the goal of r...
Magnetospheric and plasma science studies at Saturn offer a unique opportunity to explore in-depth t...
The interaction of the solar wind with the magnetospheres of the giant planets is different from tha...
Identifying and quantifying the different drivers of energy flow through a planetarymagnetosphere is ...
Uranus and Neptune are the least-explored planets in our Solar System. This paper summarizes mysteri...
Uranus and Neptune are the least-explored planets in our Solar System. This paper summarizes mysteri...
Summary: The data and figures contained in this dataset are supporting materials for the paper refer...
Thesis (Ph.D.)--University of Washington, 2018With the explosion of exoplanetary discoveries, the qu...
The Sun comprises 99.9% of the solar system mass so it is expected that Sun terrestrial planet inter...
The magnetosphere of Uranus is far from well known since there was only one fly-by measurement in hi...
The five qualitatively different types of magnetism that a planet body can exhibit are outlined. Pot...
The nature of the solar wind interaction with the giant outer planets, Jupiter and Saturn, has not b...
Ice-giant-sized planets are the most common type of observed exoplanet, yet the two ice giants in ou...
International audienceThe ice giants Uranus and Neptune are the least understood class of planets in...
Ice-giant-sized planets are the most common type of observed exoplanet, yet the two ice giants in ou...
The international planetary science community met in London in January 2020, united in the goal of r...
Magnetospheric and plasma science studies at Saturn offer a unique opportunity to explore in-depth t...
The interaction of the solar wind with the magnetospheres of the giant planets is different from tha...
Identifying and quantifying the different drivers of energy flow through a planetarymagnetosphere is ...