RF modified fast-ion distribution function in the full-orbit description
POSTER
Abstract
In low-B field spherical tokamaks, and particularly for high-energy RF-accelerated ions, the guiding-center (GC) approximation breaks down, necessitating a full-orbit (FO) treatment. We present benchmarks of a full-orbit RF implementation in the ASCOT5 code against the GC-based ORBIT-RF mode, and validate the results against experimental data from ASDEX Upgrade using diagnostics such as FIDA and INPA.
This tool has been employed to analyze NSTX(-U) cases where the RF influences the AE stability. Significant differences between FO and GC approaches are highlighted, revealing critical impacts on the fast-ion distribution and AE stability, especially for highly energetic ions poorly confined in low B-field scenarios. To investigate the effects of the RF on the AE saturation regime, a perturbative method for AE mode amplitude and phase evolutions has been implemented in ASCOT5. We plan on using this tool to understand and characterize the AE properties, focusing on the chirping properties, and to develop strategies for employing RF waves as an AE control mechanism.
Presenters
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Pablo Oyola Dominguez
University de Sevilla, Princeton Plasma Physics Laboratory (PPPL)
Authors
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Pablo Oyola Dominguez
University de Sevilla, Princeton Plasma Physics Laboratory (PPPL)
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Vinicius N Duarte
Princeton Plasma Physics Laboratory (PPPL)
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Phillip J Bonofiglo
Princeton Plasma Physics Laboratory (PPPL)
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Nicola Bertelli
Princeton Plasma Physics Laboratory (PPPL)
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Mario L Podesta
Ecole Polytechnique Federale de Lausanne
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Andreas Bierwage
National Institutes for Quantum Science and Technology (QST)
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Jose Rueda Rueda
Universidad de Sevilla/University of California-Irvine, UC Irvine
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Alvaro Sanchez-Villar
Princeton University / Princeton Plasma Physics Laboratory, Princeton Plasma Physics Laboratory
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Konsta Särkimäki
VTT Technical Research Centre of Finland
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Eric D Fredrickson
Princeton Plasma Physics Laboratory
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Roscoe B White
Princeton Plasma Physics Laboratory (PPPL)