Recently, rotationally driven magnetic reconnection was first discovered in Saturn's dayside magnetosphere. This newly confirmed process could potentially drive bursty phenomena at Saturn, i.e., pulsating energetic particles and auroral emissions. Using Cassini's measurements of magnetic fields and charged particles, we investigate particle acceleration features during three magnetic reconnection events observed in Saturn's dayside magnetodisk. The results suggest that the rotationally driven reconnection process plays a key role in producing energetic electrons (up to 100 keV) and ions (several hundreds of kiloelectron volts). In particular, we find that energetic oxygen ions are locally accelerated at all three reconnection sites. Isolate...
Magnetic reconnection is a fundamental process in solar system and astrophysical plasmas, through wh...
Using measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a 3D physical p...
Using measurements from the Cassini spacecraft in Saturn ’ s magnetosphere, we propose a 3D physical...
Recently, rotationally driven magnetic reconnection was first discovered in Saturn's dayside magneto...
Magnetic reconnection is a key process that explosively accelerates charged particles, generating ph...
peer reviewedUsing measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a ...
Magnetic reconnection is a fundamental plasma process that energizes charged particles explosively, ...
Planetary magnetospheres receive plasma and energy from the Sun or moons of planets and consequently...
The internal mass source from the icy moon Enceladus in Saturn?s rapidly rotating magnetosphere driv...
Planetary magnetospheres receive plasma and energy from the Sun or moons of planets and consequently...
The oppositely directed magnetic field in the kronian magnetic tail is expected eventually to reconn...
Using measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a 3D physi...
Reconnection within planetary magnetotails is responsible for locally energizing particles and chang...
Using measurements from the Cassini spacecraft in Saturn’s magnetosphere, we propose a 3D physical p...
We present a case study of an event from 20 August (day 232) of 2006, when the Cassini spacecraft wa...
Magnetic reconnection is a fundamental process in solar system and astrophysical plasmas, through wh...
Using measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a 3D physical p...
Using measurements from the Cassini spacecraft in Saturn ’ s magnetosphere, we propose a 3D physical...
Recently, rotationally driven magnetic reconnection was first discovered in Saturn's dayside magneto...
Magnetic reconnection is a key process that explosively accelerates charged particles, generating ph...
peer reviewedUsing measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a ...
Magnetic reconnection is a fundamental plasma process that energizes charged particles explosively, ...
Planetary magnetospheres receive plasma and energy from the Sun or moons of planets and consequently...
The internal mass source from the icy moon Enceladus in Saturn?s rapidly rotating magnetosphere driv...
Planetary magnetospheres receive plasma and energy from the Sun or moons of planets and consequently...
The oppositely directed magnetic field in the kronian magnetic tail is expected eventually to reconn...
Using measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a 3D physi...
Reconnection within planetary magnetotails is responsible for locally energizing particles and chang...
Using measurements from the Cassini spacecraft in Saturn’s magnetosphere, we propose a 3D physical p...
We present a case study of an event from 20 August (day 232) of 2006, when the Cassini spacecraft wa...
Magnetic reconnection is a fundamental process in solar system and astrophysical plasmas, through wh...
Using measurements from the Cassini spacecraft in Saturn's magnetosphere, we propose a 3D physical p...
Using measurements from the Cassini spacecraft in Saturn ’ s magnetosphere, we propose a 3D physical...