SM020-0008
On the Impact of a Streaming Oxygen Population on Collisionless Magnetic Reconnection

Thursday, 10 December 2020
Poster
Hakon Kolsto1, Michael Hesse1, Cecilia Norgren1, Susanne Flø Spinnangr1, Paul Tenfjord1 and Norah Kaggwa Kwagala2, (1)University of Bergen, Space Plasma Physics Group, Bergen, Norway, (2)Beavercreek, VA, United States
Abstract:
Using 2.5D Particle-In-Cell (PIC) simulations, we investigate how magnetotail reconnection is affected by a cold, streaming, oxygen plasma population, attributed to an ionospheric source, in the inflow region. As the tailward streaming oxygen reaches the current layer, a tailward motion of the reconnection site is induced. Due to the much longer cyclotron period of the oxygen ions, oxygen cannot couple as directly into the reconnection dynamics as protons. We find that the oxygen ions couples indirectly by means of impacting the electron dynamics.
Therefore, a demagnetized species can, in fact, alter the dynamics of the reconnection site. We see further that the reconnection rate remains unchanged relative to a non-streaming run.
Our results may prove useful for understanding the development and dynamics of magnetospheric substorms and storms.