Generation of a Strong Parallel Electric Field and Embedded Electron Jet in the Exhaust of Moderate Guide Field Reconnection

Published in Geophysical Research Letters, 2022

Recommended citation: B. A. Wetherton, J. Egedal, A. Le, and W. Daughton. Generation of a strong parallel electric field and embedded electron jet in the exhaust of moderate guide field reconnection . Geophysical Research Letters. 2022. https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2022GL098907

Magnetospheric Multiscale observed an extended current layer concurrent with a strong parallel electric field. The current layer is embedded in the reconnection exhaust and is consistent with an extended magnetized jet expected in roughly symmetric moderate guide field reconnection. The strong parallel electric field observed at the jet balances a strong gradient in the parallel electron pressure caused by a transition between magnetized electrons with Te‖ > Te⊥ on one side of the jet and demagnetized, roughly isotropic electrons across the thin current layer. Simulation results show how this transition can occur and how the associated electron pressure gradients in Ohm’s law balance the parallel electric field.