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C. Giroud

  1. Gyrokinetic analysis and simulation of pedestals to identify the culprits for energy losses using ‘fingerprints’
    2019/05/07 by M. Kotschenreuther, X. Liu, D.R. Hatch +14 · 20 citations
    Physics and Astronomy · Materials Science · #Magnetic confinement fusion research #Fusion materials and technologies #Ionosphere and magnetosphere dynamics
  2. Microtearing modes as the source of magnetic fluctuations in the JET pedestal
    2020/12/10 by D.R. Hatch, D. R. Hatch, M. Kotschenreuther +25 · 10 citations
    Physics and Astronomy · Engineering · #Magnetic confinement fusion research #Ionosphere and magnetosphere dynamics #Superconducting Materials and Applications
  3. Direct gyrokinetic comparison of pedestal transport in JET with carbon and ITER-like walls
    2019/05/30 by D.R. Hatch, M. Kotschenreuther, S.M. Mahajan +9 · 8 citations
    Physics and Astronomy · Engineering · Materials Science · #Magnetic confinement fusion research #Superconducting Materials and Applications #Fusion materials and technologies
  4. Effect of the relative shift between the electron density and temperature pedestal position on the pedestal stability in JET-ILW and comparison with JET-C
    2018/02/26 by E. Stefanikova, E. Štefániková, L. Frassinetti +17 · 6 citations
    Physics and Astronomy · #Magnetic confinement fusion research #Ionosphere and magnetosphere dynamics #Laser-Plasma Interactions and Diagnostics
  5. Overview of T and D–T results in JET with ITER-like wall
    2024/04/12 by Domenico Abate, D. Abate, N. Abid +1102 · 4 citations
    Physics and Astronomy · Engineering · Materials Science · #Magnetic confinement fusion research #Superconducting Materials and Applications #Fusion materials and technologies
  6. Carbon charge exchange analysis in the ITER-like wall environment
    2014/07/24 by S. Menmuir, C. Giroud, T. M. Biewer +6 · 1 citation
    Engineering · Physics and Astronomy · #Atomic and Molecular Physics #Magnetic confinement fusion research #Plasma Diagnostics and Applications
  7. Residual carbon content in the initial ITER-Like Wall experiments at JET
    2013/01/16 by S. Brezinsek, S. Jachmich, M.F. Stamp +14 · 1 citation
    Materials Science · Physics and Astronomy · #Fusion materials and technologies #Magnetic confinement fusion research #Laser-Plasma Interactions and Diagnostics