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Electrodynamic Contributions to the Hall‐ and Parallel Electric Fields in Collisionless Magnetic Reconnection.
- Source :
- Journal of Geophysical Research. Space Physics; Nov2021, Vol. 126 Issue 11, p1-10, 10p
- Publication Year :
- 2021
-
Abstract
- In collisionless magnetic reconnection, the Hall electric field and the parallel electric field play important roles because they are responsible for acceleration of charged particles, especially electrons. Using particle‐in‐cell simulations, we study electrodynamic nature of the two electric fields in two‐dimensional collisionless reconnection. We find that the Hall electric field is predominantly (≳90%) electrostatic; its electromagnetic (induced) component is small but nonzero (≲10%). The parallel electric field or potential is contributed comparably by its electrostatic and induced components. In the electron inflow region, along the separatrix, and at the X‐line, the electrostatic component of the parallel electric field (or potential) is larger; while in the electron outflow region, the electromagnetic (induced) component is larger. An initial guide field does not change the electrodynamic nature of the Hall electric field but does change that of the parallel electric field. In the guide field case, the parallel electric field is contributed predominantly by the electromagnetic component from the electron inflow region to the X‐line and by the electrostatic component in the electron outflow region. Key Points: The Hall electric field in collisionless reconnection is predominantly electrostatic; its induced component is small but nonzeroThe parallel electric field (or potential) is contributed comparably by the electrostatic and induced componentsGuide field does not change the electrodynamic nature of the Hall electric field but changes that of the parallel electric field in details [ABSTRACT FROM AUTHOR]
Details
- Language :
- English
- ISSN :
- 21699380
- Volume :
- 126
- Issue :
- 11
- Database :
- Complementary Index
- Journal :
- Journal of Geophysical Research. Space Physics
- Publication Type :
- Academic Journal
- Accession number :
- 153749469
- Full Text :
- https://doi.org/10.1029/2021JA029550