MFE VI: Waves, Energetic Particles, and Runaway Electrons

INVITED · ZI01 · ID: 18094





Presentations

  • Current Drive and Alpha-Channeling-Driven Rotation

    ORAL · Invited

    Publication: I. E. Ochs and N. J. Fisch, Momentum-Exchange Current Drive by Electrostatic Waves in an Unmagnetized Collisionless Plasma, Phys. Plasma, 27, 062109 (2020).
    I. E. Ochs and N. J. Fisch, Magnetogenesis by Wave-driven Momentum Exchange, ApJ 905, 13 (2020).
    I. E. Ochs and N. J. Fisch, Nonresonant Diffusion in Alpha Channeling, PRL 127, 025003 (2021).
    I. E. Ochs and N. J. Fisch, Wave-Driven Torques to Drive Current and Rotation, arXiv:2107.00148.

    Presenters

    • Ian E Ochs

      Princeton University

    Authors

    • Ian E Ochs

      Princeton University

    • Nathaniel J Fisch

      Princeton University, Princeton Plasma Physics Laboratory

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  • Visualization of Fast Ion, Phase-space Flow Driven by Alfvén Instabilities

    ORAL · Invited

    Presenters

    • Xiaodi Du

      General Atomics - San Diego

    Authors

    • Xiaodi Du

      General Atomics - San Diego

    • Michael A Van Zeeland

      General Atomics - San Diego, General Atomics

    • William W Heidbrink

      University of California, Irvine

    • Javier Gonzalez Martin

      University of California, Irvine

    • Konsta Särkimäki

      Department of Physics, Chalmers University of Technology, Sweden

    • Antti Snicker

      Department of Applied Physics, Aalto University, Finland

    • Max E Austin

      University of Texas at Austin

    • George R McKee

      University of Wisconsin - Madison, University of Wisconsin, Madison

    • Zheng Yan

      University of Wisconsin - Madison, University of Wisconsin, Madison

    • Yasushi Todo

      National Institute for Fusion Science, Japan, National Institute for Fusion Science, National Institute for Fusion Science, Toki, Gifu 509-5292, Japan and National Institute for Fusion Science, National Institutes of Natural Sciences, Toki, Gifu 502-5292, Japa, National Institute for Fusion Science, National Institutes of Natural Sciences, Toki, Gifu 509-5292, Japan, NIFS

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  • Runaway electron suppression in MST tokamak plasmas with RMP: simulation and experiment

    ORAL · Invited

    Publication: Munaretto, et al., NF 60, 046024 (2020)

    Presenters

    • Brian S Cornille

      University of Wisconsin - Madison, University of Wisconsin-Madison

    Authors

    • Brian S Cornille

      University of Wisconsin - Madison, University of Wisconsin-Madison

    • Stefano Munaretto

      Princeton Plasma Physics Laboratory

    • Matthew T Beidler

      Oak Ridge National Lab

    • Brett E Chapman

      University of Wisconsin - Madison, UW-Madison

    • Ami M DuBois

      US Naval Research Laboratory, Naval Research Laboratory

    • Karsten J McCollam

      University of Wisconsin - Madison, UW-Madison

    • Carl R Sovinec

      University of Wisconsin - Madison

    • Abdulgader Almagri

      University of Wisconsin - Madison

    • John A Goetz

      University of Wisconsin - Madison

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  • Self-consistent simulation of resistive kink instabilities with runaway electrons

    ORAL · Invited

    Publication: C. Liu, C. Zhao, S.C. Jardin, N. Ferraro, C. Paz-Soldan, Y. Liu, and B.C. Lyons, ArXiv:2104.10806 (2021) submitted to Plasma Physics and Controlled Fusion

    Presenters

    • Chang Liu

      Princeton Plasma Physics Laboratory

    Authors

    • Chang Liu

      Princeton Plasma Physics Laboratory

    • Chen Zhao

      Princeton Plasma Physics Laboratory, PPPL

    • Stephen C Jardin

      Princeton Plasma Physics Laboratory

    • Nathaniel M Ferraro

      Princeton Plasma Physics Laboratory

    • Carlos Paz-Soldan

      Columbia University

    • Yueqiang Q Liu

      General Atomics - San Diego, General Atomics

    • Brendan C Lyons

      General Atomics - San Diego, General Atomics

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  • DREAM: a fluid-kinetic framework for tokamak disruption runaway electron simulations

    ORAL · Invited

    Publication: Hoppe M., Embreus O. and Fülöp T., accepted for publication in Computer Physics Communications (2021) https://arxiv.org/abs/2103.16457
    Svenningsson I., Embreus O., Hoppe M., Newton S. and Fülöp T., accepted for publication in Physical Review Letters (2021) https://arxiv.org/abs/2104.03272

    Presenters

    • Mathias Hoppe

      Department of Physics, Chalmers University of Technology, SE-41296 Gothenburg, Sweden, Chalmers Univ of Tech

    Authors

    • Mathias Hoppe

      Department of Physics, Chalmers University of Technology, SE-41296 Gothenburg, Sweden, Chalmers Univ of Tech

    • Ola Embreus

      Department of Physics, Chalmers University of Technology, SE-41296 Gothenburg, Sweden

    • Ida Svenningsson

      Department of Physics, Chalmers University of Technology, SE-41296 Gothenburg, Sweden

    • Sarah L Newton

      Culham Centre for Fusion Energy, Abingdon, Oxon OX14 3DB, United Kingdom

    • Tunde M Fulop

      Department of Physics, Chalmers University of Technology, SE-41296 Gothenburg, Sweden, Chalmers Univ of Tech

    View abstract →