[HTML][HTML] Control of runaway electron energy using externally injected whistler waves

Z Guo, CJ McDevitt, XZ Tang - Physics of Plasmas, 2018 - pubs.aip.org
One way of mitigating runaway damage of the plasma-facing components in a tokamak
fusion reactor is by limiting the runaway electron energy under a few MeV, while not …

Control of runaway electron energy using externally injected whistler waves

Z Guo, CJ McDevitt, X Tang - Physics of Plasmas, 2018 - osti.gov
One way of mitigating runaway damage of the plasma-facing components in a tokamak
fusion reactor is by limiting the runaway electron energy under a few MeV, while not …

Control of runaway electron energy using externally injected whistler waves

Z Guo, CJ McDevitt, XZ Tang - Physics of Plasmas, 2018 - pubs.aip.org
One way of mitigating runaway damage of the plasma-facing components in a tokamak
fusion reactor is by limiting the runaway electron energy under a few MeV, while not …

Control of runaway electron energy using externally injected whistler waves

Z Guo, CJ McDevitt, X Tang - Physics of Plasmas, 2018 - lanlexperts.elsevierpure.com
One way of mitigating runaway damage of the plasma-facing components in a tokamak
fusion reactor is by limiting the runaway electron energy under a few MeV, while not …

Control of runaway electron energy using externally injected whistler waves

Z Guo, X Tang, C Mcdevitt - fusion.gat.com
Runaway electrons present a challenge for disruption mitigation, especially for reactor-size
tokamaks such as ITER, which is designed to have about 15 mega-ampere of plasma …

Control of runaway electron energy using externally injected whistler waves

Z Guo, CJ McDevitt, XZ Tang - Physics of Plasmas, 2018 - ui.adsabs.harvard.edu
One way of mitigating runaway damage of the plasma-facing components in a tokamak
fusion reactor is by limiting the runaway electron energy under a few MeV, while not …