Phase space structure of the electron diffusion region in reconnection with weak guide fields

dc.contributor.authorNg, Jonathan
dc.contributor.authorEgedal, J.
dc.contributor.authorLe, A.
dc.contributor.authorDaughton, W.
dc.date.accessioned2021-07-26T19:31:20Z
dc.date.available2021-07-26T19:31:20Z
dc.date.issued2012-11-12
dc.description.abstractKinetic simulations of magnetic reconnection provide detailed information about the electric and magnetic structure throughout the simulation domain, as well as high resolution profiles of the essential fluid parameters including the electron and ion densities, flows, and pressure tensors. However, the electron distribution function, f(v), within the electron diffusion region becomes highly structured in the three dimensional velocity space and is not well resolved by the data available from the particle-in-cell (PIC) simulations. Here, we reconstruct the electron distribution function within the diffusion region at enhanced resolution. This is achieved by tracing electron orbits in the fields taken from PIC simulations back to the inflow region where an analytic form of the magnetized electron distribution is known. For antiparallel reconnection, the analysis reveals the highly structured nature of f(v), with striations corresponding to the number of times electrons have been reflected within the reconnection current layer, and exposes the origin of gradients in the electron pressure tensor important for momentum balance. The structure of the reconnection region is strongly tied to the pressure anisotropy that develops in the electrons upstream of the reconnection region. The addition of a guide field changes the nature of the electron distributions, and the differences are accounted for by studying the motion of single particles in the field geometry. Finally, the geometry of small guide field reconnection is shown to be highly sensitive to the ion/electron mass ratio applied in the simulation.en_US
dc.description.urihttps://aip.scitation.org/doi/10.1063/1.4766895en_US
dc.format.extent13 pagesen_US
dc.genrejournal articlesen_US
dc.identifierdoi:10.13016/m2kecb-7gtc
dc.identifier.citationNg, Jonathan et al.; Phase space structure of the electron diffusion region in reconnection with weak guide fields; Physics of Plasmas 19, 112108, 12 November, 2012; https://doi.org/10.1063/1.4766895en_US
dc.identifier.urihttps://doi.org/10.1063/1.4766895
dc.identifier.urihttp://hdl.handle.net/11603/22122
dc.language.isoen_USen_US
dc.publisherAIP Publishingen_US
dc.relation.isAvailableAtThe University of Maryland, Baltimore County (UMBC)
dc.relation.ispartofUMBC Goddard Planetary Heliophysics Institute (GPHI)
dc.rightsThis item is likely protected under Title 17 of the U.S. Copyright Law. Unless on a Creative Commons license, for uses protected by Copyright Law, contact the copyright holder or the author.
dc.rightsPublic Domain Mark 1.0*
dc.rightsThis work was written as part of one of the author's official duties as an Employee of the United States Government and is therefore a work of the United States Government. In accordance with 17 U.S.C. 105, no copyright protection is available for such works under U.S. Law.
dc.rights.urihttp://creativecommons.org/publicdomain/mark/1.0/*
dc.titlePhase space structure of the electron diffusion region in reconnection with weak guide fieldsen_US
dc.typeTexten_US

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