Empirical impact of near-separatrix plasma and neutral transport on the pedestal in the transition between EDA and ELMy H-modes on Alcator C-Mod
M.A. Miller, J.W. Hughes, S. Saarelma, T. Eich, J. Dunsmore, J. Han, P. Manz, J.W. Connor, G.R. Tynan, A.E. Hubbard, A. Ho, T. Body, D. Silvagni, O. Grover, S. Mordijck, E.M. Edlund, B. LaBombard, M. Wigram, A. Cavallaro

TL;DR
This study investigates the plasma and neutral transport effects on the pedestal structure during the transition from EDA to ELMy H-modes on Alcator C-Mod, validating and extending predictive models with experimental data.
Contribution
It validates and extends pedestal density prediction models by incorporating resistive ballooning mode transport, improving accuracy for EDA H-modes and analyzing the impact of neutral sources and transport channels.
Findings
Pedestal density is neutral-source sensitive only in ELMy H-modes.
Resistive ballooning mode transport improves model predictions for EDA H-modes.
Including RBM transport reduces pedestal density by about 20%."],
Abstract
The transition between the ELMy H-mode and the EDA H-mode is studied on Alcator C-Mod using an experimental database and predictive pedestal models. High-resolution Thomson scattering measurements are used to compare the pedestal density, , and the separatrix density, with main chamber neutral measurements. is sensitive to neutral sources only in the ELMy H-mode regime and not in the EDA H-mode regime. Density fluctuation spectra reveal that quasi-coherent structures become stronger at higher densities and more coherent in the EDA relative to the inter-ELM phases of ELMy H-modes, before weakening again at the highest values of . The Saarelma-Connor pedestal density prediction model is validated for ELMy H-modes up to m. An additional transport channel driven…
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Taxonomy
TopicsMagnetic confinement fusion research · Laser-Plasma Interactions and Diagnostics · Dust and Plasma Wave Phenomena
