collaborators

7 papers

physics.plasm-ph2026

First step toward multi machine ELM energy scalings and extrapolations to SPARC and ITER

R. Perillo, A. Redl, T. Eich +14

It is shown that the ELM energy loss normalized by the plasma stored energy (ΔEELM/Wplasma) for high-density small/QCE ELM regimes scales inversely with the separatrix turbulence p…

physics.plasm-ph2026

The physics of ELM-free regimes in EUROfusion tokamaks

M. G. Dunne, M. Faitsch, O. Sauter +25

The development of operational scenarios without large Type-I ELMs is of utmost importance for the stable operation and longevity of future tokamaks. The EUROfusion tokamak exploit…

physics.plasm-ph2026

Hollow toroidal rotation profiles in strongly electron heated H-mode plasmas in the ASDEX Upgrade tokamak

C. F. B. Zimmermann, R. M. McDermott, C. Angioni +8

This work investigates toroidal momentum transport in type-I ELMy H-mode plasmas in the ASDEX Upgrade tokamak, focusing on the formation of hollow rotation profiles under strong el…

physics.plasm-ph2026

Quantitative 3D non-linear simulations of shattered pellet injection in ASDEX Upgrade using JOREK

W. Tang, M. Hoelzl, P. Heinrich +16

Shattered pellet injection (SPI) as primary mitigation method for major disruptions in ITER has a large parameter space available for optimization including the total amount of inj…

physics.plasm-ph2026

A predictive formula for the H-mode electron separatrix density: Bridging regression and physics-based models across C-Mod, AUG and JET tokamaks

D. Silvagni, O. Grover, A. Stagni +27

The electron density at the separatrix () plays a central role in balancing energy confinement, detachment achievement, and ELM suppression in tokamaks, thereby…

physics.plasm-ph2025

Simulating X-point radiator turbulence

K. Eder, W. Zholobenko, A. Stegmeir +5

Coupling a high-performance burning plasma core to a detached boundary solution is critical for realizing magnetic confinement fusion power. Predictive simulations of the edge and…