Auroral hot spots are observed across the Universe at different scales1 and mark the coupling between a surrounding plasma environment and an atmosphere. Within our own Solar System, Jupiter possesses the only resolvable example of this large-scale energy transfer. Jupiter’s northern X-ray aurora is concentrated into a hot spot, which is located at the most poleward regions of the planet’s aurora and pulses either periodically2,3 or irregularly4,5 . X-ray emission line spectra demonstrate that Jupiter’s northern hot spot is produced by high charge-state oxygen, sulfur and/or carbon ions with an energy of tens of MeV (refs 4–6) that are undergoing charge exchange. Observations instead failed to reveal a similar feature in th...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Auroral hot spots are observed across the Universe at different scales1 and mark the coupling betwee...
Jupiter's X-ray aurora has been thought to be excited by energetic sulphur and oxygen ions precipita...
X-ray emissions from Jupiter, discovered by Eisnsten observatory and followed up by ROSAT, have bee...
Jupiter's X-ray aurora has been thought to be excited by energetic sulphur and oxygen ions precipita...
Jupiter’s rapidly rotating, strong magnetic field provides a natural laboratory that is key to under...
Jupiter's X-ray aurora has been thought to be excited by energetic sulphur and oxygen ions precipita...
Jupiter's rapidly rotating, strong magnetic field provides a natural laboratory that is key to under...
peer reviewedJupiter’s rapidly rotating, strong magnetic field provides a natural laboratory that is...
To help understand and determine the driver of jovian auroral X-rays, we present the first statistic...
Jupiter’s rapidly rotating, strong magnetic field provides a natural laboratory that is key to under...
Jupiter's polar X-ray aurora is dominated by a bright dynamic hot spot that is produced by precipita...
Jupiter's soft X-ray aurora is concentrated into a bright and dynamic hot spot that is dominated by ...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Auroral hot spots are observed across the Universe at different scales1 and mark the coupling betwee...
Jupiter's X-ray aurora has been thought to be excited by energetic sulphur and oxygen ions precipita...
X-ray emissions from Jupiter, discovered by Eisnsten observatory and followed up by ROSAT, have bee...
Jupiter's X-ray aurora has been thought to be excited by energetic sulphur and oxygen ions precipita...
Jupiter’s rapidly rotating, strong magnetic field provides a natural laboratory that is key to under...
Jupiter's X-ray aurora has been thought to be excited by energetic sulphur and oxygen ions precipita...
Jupiter's rapidly rotating, strong magnetic field provides a natural laboratory that is key to under...
peer reviewedJupiter’s rapidly rotating, strong magnetic field provides a natural laboratory that is...
To help understand and determine the driver of jovian auroral X-rays, we present the first statistic...
Jupiter’s rapidly rotating, strong magnetic field provides a natural laboratory that is key to under...
Jupiter's polar X-ray aurora is dominated by a bright dynamic hot spot that is produced by precipita...
Jupiter's soft X-ray aurora is concentrated into a bright and dynamic hot spot that is dominated by ...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...
Jupiter's X-ray auroral emission in the polar cap region results from particles which have undergone...