Abstract
Experimental observations in JET tokamak plasmas and gyrokinetic simulations point to an important role, for electron heat transport, of electron-scale instabilities and of their interaction with ion-scale instabilities. Since these effects are maximized for strong electron heating and ion-scale modes close to marginal stability, these findings are of high relevance for ITER plasmas, featuring both conditions. Gyrokinetic and quasi-linear transport models accounting for multi-scale effects are assessed against JET experimental results.
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Bonanomi, N., Mantica, P., Citrin, J., Goerler, T., & Teaca, B. (2018). Impact of electron-scale turbulence and multi-scale interactions in the JET tokamak. Nuclear Fusion, 58(12). https://doi.org/10.1088/1741-4326/aae0a8
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