PPPL-3705 is available in pdf format (460 KB).
Neutral Transport Simulations of Gas Puff Imaging Experiments on Alcator C-Mod
Authors: D.P. Stotler, B. LaBombard, J.L. Terry, and S.J. Zweben
Date of PPPL Report: June 2002
Presented at: the 15th International Conference on Plasma Surface Interactions in Controlled Fusion Devices. Proceedings to be published in a special Issue of the Journal of Nuclear Materials.
Visible imaging of gas puffs has been used on the Alcator C-Mod tokamak to characterize edge plasma turbulence, yielding data that can be compared with plasma turbulence codes. Simulations of these experiments with the DEGAS 2 Monte Carlo neutral transport code have been carried out to explore the relationship between the plasma fluctuations and the observed light emission. By imposing two-dimensional modulations on the measured time-average plasma density and temperature profiles, we demonstrate that the spatial structure of the emission cloud reflects that of the underlying turbulence. However, the photon emission rate depends on the plasma density and temperature in a complicated way, and no simple scheme for inferring the plasma parameters directly from the light emission patterns is apparent. The simulations indicate that excited atoms generated by molecular dissociation are a significant source of photons, further complicating interpretation of the gas puff imaging results.