Frequency Chirping of Energetic-Particle-Driven Geodesic Acoustic Modes in Tokamaks

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Hauptverfasser: Wu, R., Biancalani, A., Gossard, D., Ivanov, R., Mishchenko, A., Wang, X., Zonca, F.
Format: Preprint
Veröffentlicht: 2026
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author Wu, R.
Biancalani, A.
Gossard, D.
Ivanov, R.
Mishchenko, A.
Wang, X.
Zonca, F.
author_facet Wu, R.
Biancalani, A.
Gossard, D.
Ivanov, R.
Mishchenko, A.
Wang, X.
Zonca, F.
contents A suprathermal population of ions is present in tokamak plasmas due to external heating mechanisms and fusion reactions. These energetic particles (EP) can drive wave unstable, via inverse Landau damping. An example is the energetic-particledriven geodesic acoustic mode (EGAMs). In this work, we perform a systematic gyrokinetic investigation of the EGAM linear and nonlinear dynamics, using the global gyrokinetic particle-in-cell code ORB5. The nonlinear saturation given by the EP redistribution in phase space is characterized by a saturation level scaling quadratically with respect to the linear growth rate. The nonlinear EP dynamics in phase space has also effects on the EGAM frequency. To this extent, we investigate the frequency chirping, and we find that the chirping rate scales linearly with the linear growth rate over a wide range of EP concentrations. This scaling is consistent with the theoretical prediction of Chen-Zonca [L. Chen, and F. Zonca, Rev. Mod. Phys. 88, 015008 (2016)].
format Preprint
id arxiv_https___arxiv_org_abs_2603_23430
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Frequency Chirping of Energetic-Particle-Driven Geodesic Acoustic Modes in Tokamaks
Wu, R.
Biancalani, A.
Gossard, D.
Ivanov, R.
Mishchenko, A.
Wang, X.
Zonca, F.
Plasma Physics
A suprathermal population of ions is present in tokamak plasmas due to external heating mechanisms and fusion reactions. These energetic particles (EP) can drive wave unstable, via inverse Landau damping. An example is the energetic-particledriven geodesic acoustic mode (EGAMs). In this work, we perform a systematic gyrokinetic investigation of the EGAM linear and nonlinear dynamics, using the global gyrokinetic particle-in-cell code ORB5. The nonlinear saturation given by the EP redistribution in phase space is characterized by a saturation level scaling quadratically with respect to the linear growth rate. The nonlinear EP dynamics in phase space has also effects on the EGAM frequency. To this extent, we investigate the frequency chirping, and we find that the chirping rate scales linearly with the linear growth rate over a wide range of EP concentrations. This scaling is consistent with the theoretical prediction of Chen-Zonca [L. Chen, and F. Zonca, Rev. Mod. Phys. 88, 015008 (2016)].
title Frequency Chirping of Energetic-Particle-Driven Geodesic Acoustic Modes in Tokamaks
topic Plasma Physics
url https://arxiv.org/abs/2603.23430