77 citations · 104 across the 3 of their papers we have counts for
3 papers
physics.plasm-ph2016★ 6 cited
Runaway-electron formation and electron slide-away in an ITER post-disruption scenario
A. Stahl, O. Embréus, M. Landreman +2
Mitigation of runaway electrons is one of the outstanding issues for the reliable operation of ITER and other large tokamaks, and accurate estimates for the expected runaway-electr…
physics.plasm-ph2016★ 21 cited
NORSE: A solver for the relativistic non-linear Fokker-Planck equation for electrons in a homogeneous plasma
A. Stahl, M. Landreman, O. Embréus +1
Energetic electrons are of interest in many types of plasmas, however previous modeling of their properties has been restricted to the use of linear Fokker-Planck collision operato…
physics.plasm-ph2014★ 77 cited
Effective Critical Electric Field for Runaway-Electron Generation
Adam Stahl, Eero Hirvijoki, Joan Decker +2
In this Letter we investigate factors that influence the effective critical electric field for runaway-electron generation in plasmas. We present numerical solutions of the kinetic…