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MFE V: Pedestal and Edge-Localized Modes

INVITED · UI01 · ID: 18095





Presentations

  • Using the Super H-Mode as a Platform for Integrated Core-Edge Studies

    ORAL · Invited

    Publication: IAEA 2021 conference proceedings and submitted NF manuscript (focused more on energy discussion)<br>Planned PoP associated with this presentation

    Presenters

    • Theresa M Wilks

      Massachusetts Institute of Technology, Massachusetts Institute of Technology MIT, Massachusetts Institute of Technology MI, MIT PSFC

    Authors

    • Theresa M Wilks

      Massachusetts Institute of Technology, Massachusetts Institute of Technology MIT, Massachusetts Institute of Technology MI, MIT PSFC

    View abstract →

  • Reduced predictive models for Micro-tearing modes in the pedestal

    ORAL · Invited

    Publication: Larakers, J. L.,Curie, M.T., Hatch, D. R., Hazeltine, R. D., & Mahajan, S. M. (2021). Global theory of microtearing modes in the tokamak pedestal.Physics Review Letter. https://link.aps.org/doi/10.1103/PhysRevLett.126.225001

    Presenters

    • Max Curie

      University of Texas at Austin

    Authors

    • Max Curie

      University of Texas at Austin

    View abstract →

  • The pedestal density structure with reduced neutral fueling

    ORAL · Invited

    Presenters

    • Saskia Mordijck

      William & Mary, College of William and Mary

    Authors

    • Saskia Mordijck

      William & Mary, College of William and Mary

    • Jerry W Hughes

      MIT PSFC, Massachusetts Institute of Technology MI, Massachusetts Institute of Technology MIT

    • Francesco Sciortino

      Massachusetts Institute of Technology, Massachusetts Institute of Technology MIT, MIT PSFC, Massachusetts Institute of Technology MI

    • Richard M Reksoatmodjo

      William & Mary

    • Emily A Belli

      General Atomics - San Diego, General Atomics

    • Tomas Odstrcil

      General Atomics - San Diego

    • Colin Chrystal

      General Atomics - San Diego, General Atomics

    View abstract →

  • Optimizing edge confinement and stability via adaptive ELM control using RMPs

    ORAL · Invited

    Publication: S.K.Kim et al., "Optimization of 3D controlled ELM-free state with recovered global confinement for tokamak fusion plasmas" submitted to Nature comm.

    Presenters

    • SangKyeun Kim

      Princeton University, Princeton Plasma Physics Laboratory, Princeton University, Princeton, U.S.A.

    Authors

    • SangKyeun Kim

      Princeton University, Princeton Plasma Physics Laboratory, Princeton University, Princeton, U.S.A.

    • Ricardo Shousha

      Princeton University

    • Sang-hee Hahn

      Korea Institute of Fusion Energy, Korea Institute of Fusion Energy (KFE), KFE, Korea Institute of Fusion Energy, Daejeon, Korea

    • Andrew O Nelson

      Princeton Plasma Physics Library, Princeton University

    • Josiah T Wai

      Princeton University

    • SeongMoo Yang

      Princeton Plasma Physics Laboratory, Princeton Plasma Physics Laboratory, Princeton, U.S.A.

    • Jong-Kyu Park

      Princeton Plasma Physics Laboratory

    • Raffi M Nazikian

      Princeton Plasma Physics Laboratory

    • Qiming Hu

      Princeton Plasma Physics Laboratory

    • Y. M. Jeon

      Korea Institute of Fusion Energy, Korea Institute for Fusion Energy

    • Yongkyoon In

      Ulsan Natl Inst of Sci & Tech, Ulsan National Institute of Science and Technology, Ulsan National Institute of Science and Technology (UNIST)

    • J. H. Lee

      Korea Institute of Fusion Energy, Korea Institute for Fusion Energy, Daejeon, Republic of Korea, Korea Institute of Fusion Energy (KFE)

    • Jaewook Kim

      Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Daejeon, Korea, Korea institute of Fusion Energy, Korea Institute of Fusion Energy (KFE)

    • Yong-Su Na

      Seoul National University, Seoul National University, Seoul, Korea

    • Egemen Kolemen

      Princeton University, Princeton University / PPPL, Princeton University/PPPL

    View abstract →

  • New High-Speed Measurements of Pedestal Magnetic Field during the ELM cycle on DIII-D and Implications for Modeling

    ORAL · Invited

    Presenters

    • Marcus G Burke

      Lawrence Livermore National Laboratory

    Authors

    • Marcus G Burke

      Lawrence Livermore National Laboratory

    • Raymond J Fonck

      University of Wisconsin - Madison

    • George R McKee

      University of Wisconsin - Madison, University of Wisconsin, Madison

    • Keith H Burrell

      General Atomics - San Diego, General Atomics

    • Shaun R Haskey

      Princeton Plasma Physics Laboratory

    • Matthias Knolker

      General Atomics

    • Florian M. Laggner

      Princeton Plasma Physics Laboratory

    • Tom H Osborne

      General Atomics, General Atomics - San Diego

    • Brian Victor

      Lawrence Livermore National Laboratory, LLNL

    • Zheng Yan

      University of Wisconsin - Madison, University of Wisconsin, Madison

    View abstract →