36 citations · 51 across the 3 of their papers we have counts for
3 papers
physics.plasm-ph2024
Implications of Vertical Stability Control on the SPARC Tokamak
A. O. Nelson, D. T. Garnier, D. J. Battaglia +5
To achieve its performance goals, SPARC plans to operate in equilibrium configurations with a strong elongation of , destabilizing the vertical inst…
physics.plasm-ph2023★ 15 cited
On the minimum transport required to passively suppress runaway electrons in SPARC disruptions
R. A. Tinguely, I. Pusztai, V. A. Izzo +8
In [V.A. Izzo et al 2022 Nucl. Fusion 62 096029], state-of-the-art modeling of thermal and current quench (CQ) MHD coupled with a self-consistent evolution of runaway electron (RE)…
physics.plasm-ph2022★ 36 cited
Runaway electron deconfinement in SPARC and DIII-D by a passive 3D coil
V. A. Izzo, I. Pusztai, K. Särkimäki +7
The operation of a 3D coil--passively driven by the current quench loop voltage--for the deconfinement of runaway electrons is modeled for disruption scenarios in the SPARC and DII…