DOE OSTI · 1962874
Visualization of Fast Ion Phase-Space Flow Driven by Alfvén Instabilities
Abstract
Fast ion phase-space flow, driven by Alfven eigenmodes (AEs), is measured by an imaging neutral particle analyzer in the DIII-D tokamak. The flow firstly appears near the minimum safety factor at the injection energy of neutral beams, and then moves radially inward and outward by gaining and losing energy, respectively. The flow trajectories in phase space align well with the intersection lines of the constant magnetic moment surfaces and constant E – (ω/n)P ζ surfaces, where E, P ζ are energy and toroidal canonical momentum of ions; ω and n are angular frequencies and toroidal mode numbers of AEs. It is found that the flow is so destructive that the thermalization of fast ions is no longer observed in regions of strong interaction. Here, the measured phase-space flow is consistent with nonlinear hybrid kinetic-magnetohydrodynamics simulation. Calculations of the relatively narrow phase-space islands reveal that fast ions must transition between different flow trajectories to experience large-scale phase-space transport.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Du, X. D., Van Zeeland, M. A., Heidbrink, W. W., Gonzalez-Martin, J., Särkimäki, K., Snicker, A., Lin, D., Collins, C. S., Austin, M. E., McKee, G. R., Yan, Z., Todo, Y., Wu, W.. 2021-12-01. Visualization of Fast Ion Phase-Space Flow Driven by Alfvén Instabilities. https://doi.org/10.1103/physrevlett.127.235002
Cite the original work for its findings. Save a collection to share your selection of sources.