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Effect of a guide field on the turbulence like properties of magnetic reconnection

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Title: Effect of a guide field on the turbulence like properties of magnetic reconnection
Authors: Adhikari, S
Shay, M
Parashar, T
Matthaeus, W
Pyakurel, P
Stawarz, J
Eastwood, J
Item Type: Journal Article
Abstract: The effect of an external guide field on the turbulence-like properties of magnetic reconnection is studied using five different 2.5D kinetic particle-in-cell (PIC) simulations. The magnetic energy spectrum is found to exhibit a slope of approximately −5/3 in the inertial range, independent of the guide field. On the contrary, the electric field spectrum, in the inertial range steepens more with the guide field and approaches a slope of −5/3. In addition, spectral analysis of the different terms of the generalized Ohm’s law is performed and found to be consistent with PIC simulations of turbulence and MMS observations. Finally, the guide field effect on the energy transfer behavior is examined using von-K´arm´an Howarth (vKH) equation based on incompressible Hall-MHD. The general characteristics of the vKH equation with constant rate of energy transfer in the inertial range, is consistent in all the simulations. This suggests that the qualitative behavior of energy spectrum, and energy transfer in reconnection is similar to that of turbulence, indicating that reconnection fundamentally involves an energy cascade.
Issue Date: Aug-2023
Date of Acceptance: 12-Jul-2023
URI: http://hdl.handle.net/10044/1/105816
ISSN: 1070-664X
Publisher: American Institute of Physics
Start Page: 1
End Page: 14
Journal / Book Title: Physics of Plasmas
Volume: 30
Issue: 8
Copyright Statement: Copyright © 2023 American Institute of Physics. The following article appeared in S. Adhikari, M. A. Shay, T. N. Parashar, W. H. Matthaeus, P. S. Pyakurel, J. E. Stawarz, J. P. Eastwood; Effect of a guide field on the turbulence like properties of magnetic reconnection. Physics of Plasmas 1 August 2023; 30 (8): 082904. and may be found at https://doi.org/10.1063/5.0150929 For the purpose of open access, the authors have applied a Creative Commons Attribution (CC BY) license to any Author Accepted Manuscript version arising.
Publication Status: Published
Article Number: 082904
Online Publication Date: 2023-08-09
Appears in Collections:Space and Atmospheric Physics
Physics
Faculty of Natural Sciences



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