Crynodeb
Waves driven by electron beams are frequently observed within the narrow separatrices of magnetic reconnection. Strong plasma instabilities can grow from mixing between the reconnection inflow and outflow, resulting in electron heating which ultimately influences the reconnection process. Observations of a separatrix encounter by the Magnetospheric MultiScale mission on July 11, 2017 feature an anti-parallel electron beam accelerated in a sub-ion-scale layer containing high amplitude (>50 mV/m) electrostatic waves. In two consecutive separatrix crossings, one exhibits faster electron beams, greater magnetic shear, higher amplitude waves, and more electron heating than the other. The observations suggest that variable reconnection outflow pressure is associated with these changes. Coincident with lower hybrid waves are Buneman and beam-mode instabilities, likely responsible for parallel heating of electrons. Dissipation (J⋅E) within the mixing layer is found to be negative where wave activity is strongest, indicating a slowing of electrons and growth of electromagnetic fields likely related to local thinning of the separatrix. Calculation of momentum balance via the generalized Ohm's law indicates an overall imbalance of >40 mV/m in the more extreme separatrix crossing, requiring a significant dissipative term or error in the electron inertial term to make up the remainder. Finally, an analysis of quasi-viscous heating shows that active heating of electrons is more prevalent in the presence of a high speed electron inflow and increased magnetic shear.
| Iaith wreiddiol | Saesneg |
|---|---|
| Rhif yr erthygl | e2020JA028520 |
| Nifer y tudalennau | 19 |
| Cyfnodolyn | Journal of Geophysical Research: Space Physics |
| Cyfrol | 126 |
| Rhif cyhoeddi | 7 |
| Dynodwyr Gwrthrych Digidol (DOIs) | |
| Statws | Cyhoeddwyd - 06 Gorff 2021 |
| Cyhoeddwyd yn allanol | Ie |
Ôl bys
Gweld gwybodaeth am bynciau ymchwil 'Wave Activity in a Dynamically Evolving Reconnection Separatrix'. Gyda’i gilydd, maen nhw’n ffurfio ôl bys unigryw.Dyfynnu hyn
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver