Simulation of Equilibrium, Stability, and Transport in Advanced FRCs
November 2020 | S. Dettrick | APS-DPP | Poster
Analysis – interpretive modeling of C-2W experiment. Simulation – predictive modeling of experiment.
November 2020 | S. Dettrick | APS-DPP | Poster
Analysis – interpretive modeling of C-2W experiment. Simulation – predictive modeling of experiment.
October 2019 | Francesco Ceccherini | APS-DPP | Poster
In TAE Technologies’ current experimental device, C-2W, record breaking, advanced beam-driven FRC plasmas are produced and sustained in steady state…
October 2019 | S.A. Dettrick | APS-DPP | Poster
Analysis – interpretive modeling of experiment. Infer plasma parameters and profiles from diagnostics. Estimate transport coefficients and confinement times
June 2019 | H. Gota | Nuclear Fusion | Paper
TAE Technologies’ research is devoted to producing high temperature, stable, long-lived field-reversed configuration (FRC) plasmas by neutral-beam injection (NBI) and edge biasing/control.
April 2019 | A.Necas | 2019 Sherwood Fusion Theory | Poster
TAE Technologies, Inc, has an active fusion plasma research program centered around the FRC (Field Reversed Configuration) magnetic topology and the existing C-2W (aka Norman) experiment.
October 2018 | S. Dettrick | APS-DPP | Poster
Flexible control systems for all three of these actuators are available on the C-2W experiment, so we study their effects on FRC Equilibrium and Global Stability