©2017. American Geophysical Union. All Rights Reserved. The influence of the solar wind on Jupiter's magnetosphere is studied via three-dimensional global MHD simulations. We especially examine how solar wind density variations affect the main auroral emission. Our simulations show that a density increase in the solar wind has strong effects on the Jovian magnetosphere: the size of the magnetosphere decreases, the field lines are compressed on the dayside and elongated on the nightside (this effect can be seen even deep inside the magnetosphere), and dawn-dusk asymmetries are enhanced. Our results also show that the main oval becomes brighter when the solar wind is denser. But the precise response of the main oval to such a density enhancem...
Although mass and energy in Jupiter’s magnetosphere mostly come from the innermost Galilean moon Io’...
This paper presents a global model of the Jovian magnetosphere which is valid not only in the equat...
We have developed a new global magnetohydrodynamic (MHD) model for Jupiter’s magnetosphere based on ...
The influence of the solar wind on Jupiter's magnetosphere is studied via three-dimensional global M...
The jovian aurora contains a persistent main oval encircling each magnetic pole, which is associated...
The coupling of Jupiter's magnetosphere and ionosphere plays a vital role in creating its auroral em...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
Jupiter's magnetosphere is often said to be rotationally driven, with strong centrifugal stresses du...
AbstractThe coupling of Jupiter's magnetosphere and ionosphere plays a vital role in creating its au...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
Jupiter's auroral emission is a spectacular phenomenon that provides insight into energy release pro...
We have used a three-dimensional magnetohydrodynamic simulation of the interaction between the solar...
Eight spacecraft have now visited the Jovian system and obtained a wealth of information about Jupit...
peer reviewedJupiter displays the most powerful auroral emissions in our solar system, which result ...
We present observations of Jupiter's magnetic field and plasma obtained with the NASA Juno spacecraf...
Although mass and energy in Jupiter’s magnetosphere mostly come from the innermost Galilean moon Io’...
This paper presents a global model of the Jovian magnetosphere which is valid not only in the equat...
We have developed a new global magnetohydrodynamic (MHD) model for Jupiter’s magnetosphere based on ...
The influence of the solar wind on Jupiter's magnetosphere is studied via three-dimensional global M...
The jovian aurora contains a persistent main oval encircling each magnetic pole, which is associated...
The coupling of Jupiter's magnetosphere and ionosphere plays a vital role in creating its auroral em...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
Jupiter's magnetosphere is often said to be rotationally driven, with strong centrifugal stresses du...
AbstractThe coupling of Jupiter's magnetosphere and ionosphere plays a vital role in creating its au...
Jupiter displays the most powerful auroral emissions in our solar system, which result from strong e...
Jupiter's auroral emission is a spectacular phenomenon that provides insight into energy release pro...
We have used a three-dimensional magnetohydrodynamic simulation of the interaction between the solar...
Eight spacecraft have now visited the Jovian system and obtained a wealth of information about Jupit...
peer reviewedJupiter displays the most powerful auroral emissions in our solar system, which result ...
We present observations of Jupiter's magnetic field and plasma obtained with the NASA Juno spacecraf...
Although mass and energy in Jupiter’s magnetosphere mostly come from the innermost Galilean moon Io’...
This paper presents a global model of the Jovian magnetosphere which is valid not only in the equat...
We have developed a new global magnetohydrodynamic (MHD) model for Jupiter’s magnetosphere based on ...