Enhanced electron mixing and heating in 3-D asymmetric reconnection at the Earth's magnetopause

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Abstract

Electron heating and mixing during asymmetric reconnection are studied with a 3-D kinetic simulation that matches plasma parameters from Magnetospheric Multiscale (MMS) spacecraft observations of a magnetopause diffusion region. The mixing and heating are strongly enhanced across the magnetospheric separatrix compared to a 2-D simulation. The transport of particles across the separatrix in 3-D is attributed to lower hybrid drift turbulence excited at the steep density gradient near the magnetopause. In the 3-D simulation (and not the 2-D simulation), the electron temperature parallel to the magnetic field within the mixing layer is significantly higher than its upstream value in agreement with the MMS observations.

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Le, A., Daughton, W., Chen, L. J., & Egedal, J. (2017). Enhanced electron mixing and heating in 3-D asymmetric reconnection at the Earth’s magnetopause. Geophysical Research Letters, 44(5), 2096–2104. https://doi.org/10.1002/2017GL072522

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