activity
20242026
collaborators

11 papers

physics.plasm-ph2026

Shafranov shift and finite effects on Alfvén Eigenmodes and microinstabilities in global electromagnetic gyrokinetic simulations

B. Rofman, G. Di Giannatale, A. Mishchenko +8

Future nuclear fusion reactors will have to confine plasma with strong kinetic gradients and small fractions of fusion-born energetic particles (EP) that are ~100 times hotter than…

physics.plasm-ph2026

On nonlinear saturation of toroidal Alfvén eigenmode due to thermal plasma nonlinearities

Ningfei Chen, Thomas Hayward-Schneider, Fulvio Zonca +7

The nonlinear saturation of toroidal Alfven eigenmode (TAE) due to thermal plasma nonlinearities is investigated using gyrokinetic particle-in-cell simulations and theoretical anal…

physics.plasm-ph2026

Role of Shafranov shift, zonal structures on the behavior of TAEs, AAEs and microinstabilities in the presence of energetic particles

B. Rofman, G. Di Giannatale, A. Mishchenko +8

In future nuclear fusion reactors, even a small fraction of fusion-born energetic particles (EP) about 100 times hotter than the thermal bulk species, contributes substantially to…

physics.plasm-ph2026

Dynamics of ion temperature gradient modes in burning plasma conditions in the presence of energetic particles

Roman Ivanov, Alessandro Biancalani, Alberto Bottino +4

The interaction between energetic particles (EPs) and ion temperature gradient (ITG) modes is studied using the global particle in cell ORB5 code. In this work, we extend previous…

physics.plasm-ph2025

Study of the impact of fast ions on core turbulence at rational surfaces via global gyrokinetic simulations

D. Brioschi, A. Di Siena, R. Bilato +6

In this work, the interplay between fast ions and safety factor rational surfaces is studied in a turbulent plasma via global nonlinear gyrokinetic simulations. Initially, the fast…

physics.plasm-ph2025

Comparison of MHD and gyrokinetic simulations of linear instabilities at the q = 1 surface

F. N. Antlitz, X. Wang, M. Hoelzl +10

Accurate modeling of core instabilities in tokamak plasmas is essential to understand the underlying physical mechanisms and their impact on plasma confinement. The ideal stability…