English

One dimensional reduced model for ITER relevant energetic particle transport

Plasma Physics 2022-01-27 v1

Abstract

We set up a mapping procedure able to translate the evolution of the radial profile of fast ions, interacting with Toroidal Alfv\'en Eigenmodes, into the dynamics of an equivalent one dimensional bump-on-tail system. We apply this mapping technique to reproduce ITER relevant simulations, which clearly outlined deviations from the diffusive quasi-linear (QL) model. Our analysis demonstrates the capability of the one-dimensional beam-plasma dynamics to predict the relevant features of the non-linear hybrid LIGKA/HAGIS simulations. In particular, we clearly identify how the deviation from the QL evolutive profiles is due to the presence of avalanche processes. A detailed analysis regarding the reduced dimensionality is also addressed, by means of phase-space slicing based on constants of motion. In the conclusions, we outline the main criticalities and outcomes of the procedure, which must be satisfactorily addressed to make quantitative prediction on the observed outgoing fluxes in a Tokamak device.

Keywords

Cite

@article{arxiv.2201.10857,
  title  = {One dimensional reduced model for ITER relevant energetic particle transport},
  author = {Nakia Carlevaro and Guo Meng and Giovanni Montani and Fulvio Zonca and Thomas Hayward-Schneider and Philipp Lauber and Zhixin Lu and Xin Wang},
  journal= {arXiv preprint arXiv:2201.10857},
  year   = {2022}
}

Comments

14 pages, 14 figures

R2 v1 2026-06-24T09:03:26.674Z