Cassini in situ observations of long duration magnetic reconnection in Saturn’s magnetotail
File(s)csa-nphys-diffusionregion_revised.pdf (529.52 KB) csa-nphys-diffusionregion-som-v12-final.pdf (6 MB)
Accepted version
Supporting information
Author(s)
Type
Journal Article
Abstract
Magnetic reconnection is a fundamental process in solar system and astrophysical plasmas, through which stored magnetic energy associated with current sheets is converted into thermal, kinetic and wave energy1, 2, 3, 4. Magnetic reconnection is also thought to be a key process involved in shedding internally produced plasma from the giant magnetospheres at Jupiter and Saturn through topological reconfiguration of the magnetic field5, 6. The region where magnetic fields reconnect is known as the diffusion region and in this letter we report on the first encounter of the Cassini spacecraft with a diffusion region in Saturn’s magnetotail. The data also show evidence of magnetic reconnection over a period of 19 h revealing that reconnection can, in fact, act for prolonged intervals in a rapidly rotating magnetosphere. We show that reconnection can be a significant pathway for internal plasma loss at Saturn6. This counters the view of reconnection as a transient method of internal plasma loss at Saturn5, 7. These results, although directly relating to the magnetosphere of Saturn, have applications in the understanding of other rapidly rotating magnetospheres, including that of Jupiter and other astrophysical bodies.
Date Issued
2015-11-30
Date Acceptance
2015-10-15
Citation
Nature Physics, 2015, 12, pp.268-271
ISSN
1745-2481
Publisher
Nature Publishing Group
Start Page
268
End Page
271
Journal / Book Title
Nature Physics
Volume
12
Copyright Statement
© 2015, Rights Managed by Nature Publishing Group
Subjects
Fluids & Plasmas
01 Mathematical Sciences
02 Physical Sciences
Publication Status
Published