HR: 1340h
AN: SM53B-0412 [Abstracts]
TI: Effect of different initialization methods on reconnection physics: A critical study using Hall MHD,
hybrid, Hall-less hybrid and full particle simulations
AU: Li, S
EM: sili@ucsd.edu
AF: UCSD, 950 Gilman Drive, Dept. of ECE, MC 0407, La Jolla, CA 92093-0407
United States
AU: * karimabadi, h
EM: homa@ece.ucsd.edu
AF: UCSD, 950 Gilman Drive, Dept. of ECE, MC 0407, La Jolla, CA 92093-0407
United States
AU: Krauss-Varban, D
EM: varban@ssl.berkeley.edu
AF: University of California, Berkeley, Space Sciences Laboratory, MC 7450
7 Gauss Way, Berkeley, CA 94720-7450
United States
AU: Huba, J
EM: huba@ppd.nrl.navy.mil
AF: Naval Research Laboratory, Code 6790, Washington, DC 20375-5320
United States
AU: Daughton, W
EM: william-daughton@uiowa.edu
AF: The University of Iowa
Department of Physics & Astronomy, 06 Van Allen Hall, Iowa City, IA 52242-1479
United States
AB:
Two commonly used techniques for performing reconnection simulations have been to either localize the resistivity (in
simulations where electron kinetic effects are not included) or impose an external perturbation on the system. In MHD, it
has been shown that depending on the spatial extent of resistivity, the nature of the solution changes. When resistivity
region occupies a large fraction of simulation domain, one obtains a Sweet-Parker solution whereas in a localized resistivity
case, the solution is Petschek-like. We demonstrate that this is due to the fact that in MHD the size of the diffusion
region coincides with the region of localized resistivity. In non-MHD limit, this is no longer the case. In order to gain a
better understanding of the effect of initialization on the physics of reconnection, we compare and contrast different
initialization schemes, including new initialization procedure. We examine the reconnection details and the size of the
diffusion region in four types of simulations codes: Hall MHD, hybrid (electron fluid, kinetic ions), Hall-less hybrid, and
full particle simulations.
DE: 7835 Magnetic reconnection
DE: 7843 Numerical simulation studies
DE: 2700 MAGNETOSPHERIC PHYSICS
DE: 2724 Magnetopause, cusp, and boundary layers
SC: SPA-Magnetospheric Physics [SM]
MN: 2004 AGU Fall Meeting