16 citations · 24 across the 3 of their papers we have counts for
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physics.plasm-ph2015★ 8 cited
Trapped-Electron Runaway Effect
E. Nilsson, J. Decker, N. J. Fisch +1
In a tokamak, trapped electrons subject to a strong electric field cannot run away immediately, because their parallel velocity does not increase over a bounce period. However, the…
physics.plasm-ph2015
Kinetic modelling of runaway electron avalanches in tokamak plasmas
E. Nilsson, J. Decker, Y. Peysson +3
Runaway electrons (REs) can be generated in tokamak plasmas if the accelerating force from the toroidal electric field exceeds the collisional drag force due to Coulomb collisions…
physics.plasm-ph2015★ 16 cited
Recent progress on lower hybrid current drive and implications for ITER
Julien Hillairet, A. Ekedahl, M. Goniche +23
The sustainment of steady-state plasmas in tokamaks requires efficient current drive systems. Lower Hybrid Current Drive (LHCD) is currently the most efficient method to generate a…