arXiv · 1808.08612
Non-linear Waves and Instabilities Leading to Secondary Reconnection in Reconnection Outflows
Abstract
Reconnection outflows are regions of intense recent scrutiny, from in situ observations and from simulations. These regions are host to a variety of instabilities and intense energy exchanges, often even superior to the main reconnection site. We report here a number of results drawn from investigation of simulations. First, the outflows are observed to become unstable to drift instabilities. Second, these instabilities lead to the formation of secondary reconnection sites. Third, the secondary processes are responsible for large energy exchanges and particle energization. Finally, the particle distribution function are modified to become non-Maxwellian and include multiple interpenetrating populations.
Explore related subjects
Keep this discovery
Giovanni Lapenta, Francesco Pucci, Vyacheslav Olshevsky, Sergio Servidio, Luca Sorriso-Valvo, David L. Newman, Martin Goldman. 2018-08-26. Non-linear Waves and Instabilities Leading to Secondary Reconnection in Reconnection Outflows. https://doi.org/10.1017/s002237781800003x
Cite the original work for its findings. Save a collection to share your selection of sources.