Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session NM10: Mini-Conference on Nonlinear Waves and Processes in Space Plasmas II
9:30 AM–12:30 PM,
Wednesday, November 7, 2018
OCC
Room: C124
Chair: Gregory Howes, The University of Iowa
Abstract ID: BAPS.2018.DPP.NM10.6
Abstract: NM10.00006 : Comparing Energy Transfer in High and Low Frequency Alfvenic Turbulence*
11:00 AM–11:18 AM
Presenter:
Kristopher G Klein
(University of Arizona)
Authors:
Kristopher G Klein
(University of Arizona)
Gregory Gershom Howes
(Univ of Iowa)
Jason M TenBarge
(Princeton Univ)
Francesco Valentini
(University of Calabria, Italy)
We employ field-particle correlations, the velocity-resolved time average of the Lorentz term in the Vlasov equation, to characterize the mechanisms responsible for energy transfer in two distinct turbulent simulations. Using these correlations, we determine the characteristic velocities associated with secular transfer of energy between electromagnetic fields and particle velocity distributions; different mechanisms will preferentially transfer energy to particles in different regions of velocity space. This tool is applied to a driven, low-frequency turbulence simulation and a higher frequency decaying turbulence simulation. In the low-frequency system, modeled using the gyrokinetic code AstroGK, the energy transfer is strongly resonant, with resonant velocities agreeing with linear predictions. In the high-frequency system, modeled using the hybrid code HVM, signatures of cyclotron damping are seen. As this method can be applied to single point observations, it is an ideal tool for application to systems with data only available at a few points within the domain where it can help elucidate the mechanisms operating in those systems.
*This work was supported by NASA grant HSR NNX16AM23G, NSF grant CAREER AGS-1054061, NSF SHINE award AGS-1622306, and DOE grant DE-SC0014599.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.NM10.6
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