[1] Recent observations of auroral arcs on Jupiter suggest that electrons are being accelerated downstream from Io’s magnetic footprint, creating detectable emissions. The downstream electron acceleration is investigated using one-dimensional spatial, two-dimensional velocity static Vlasov solutions under the constraint of quasi-neutrality and an applied potential drop. The code determines self-consistent charged particle distributions and potential structure along a magnetic field flux tube in the upward (with respect to Jupiter) current region of Io’s wake. The boundaries of the flux tube are the Io torus on one end and Jupiter’s ionosphere on the other. The results indicate that localized electric potential drops tend to form at 1.5–2.5 ...
Recent results of the first ever orbit through Jupiter's auroral region by NASA's Juno spacecraft di...
We analyze precipitating electron fluxes connected to 18 crossings of Io's footprint tail aurora, ov...
For decades, ground-based radio observations of Jovian synchrotron radiation have shown emission ori...
Observations of Jupiter's auroral regions indicate that electrons are accelerated into Jupiter's atm...
Infrared and ultraviolet images have established that auroral emissions at Jupiter caused by the ele...
Thesis (M.S.) University of Alaska Fairbanks, 2001Conditions for the formation of an electric field ...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
Auroral emissions are generated through the acceleration of current carriers along magnetic field li...
The electron acceleration processes that generate Jupiter’s uniquely powerful aurora are unexpectedl...
International audienceJupiter's radio emissions are dominated in intensity by decametric radio emiss...
Jupiter hosts very intense auroral emissions, which originates from various magnetospheric processes...
Recent observations by the Juno spacecraft have shown that electrons contributing to Jupiter's main ...
Jupiter’s dynamic auroral region is the signature of magnetosphere-ionosphere coupling. Precipitatin...
The interaction of Io with the Jovian magnetosphere creates the best known and brightest satellite-c...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
Recent results of the first ever orbit through Jupiter's auroral region by NASA's Juno spacecraft di...
We analyze precipitating electron fluxes connected to 18 crossings of Io's footprint tail aurora, ov...
For decades, ground-based radio observations of Jovian synchrotron radiation have shown emission ori...
Observations of Jupiter's auroral regions indicate that electrons are accelerated into Jupiter's atm...
Infrared and ultraviolet images have established that auroral emissions at Jupiter caused by the ele...
Thesis (M.S.) University of Alaska Fairbanks, 2001Conditions for the formation of an electric field ...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
Auroral emissions are generated through the acceleration of current carriers along magnetic field li...
The electron acceleration processes that generate Jupiter’s uniquely powerful aurora are unexpectedl...
International audienceJupiter's radio emissions are dominated in intensity by decametric radio emiss...
Jupiter hosts very intense auroral emissions, which originates from various magnetospheric processes...
Recent observations by the Juno spacecraft have shown that electrons contributing to Jupiter's main ...
Jupiter’s dynamic auroral region is the signature of magnetosphere-ionosphere coupling. Precipitatin...
The interaction of Io with the Jovian magnetosphere creates the best known and brightest satellite-c...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
Recent results of the first ever orbit through Jupiter's auroral region by NASA's Juno spacecraft di...
We analyze precipitating electron fluxes connected to 18 crossings of Io's footprint tail aurora, ov...
For decades, ground-based radio observations of Jovian synchrotron radiation have shown emission ori...