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Field-Shaping Effects on Tilt Stability in C-2W Field Reversed Configuration

Oct 2022 | Research Library,  Posters, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Performance, Plasma Research, Stability

October 2022 | T. DeHaas | APS-DPP 2022 | Poster

Traditional FRCs are known to be theoretically unstable to an internal tilt mode whose threshold is characterized by the parameter S*/E.

Recent Progress in Simulation and Theory of the C-2W Experiment and Beyond

Jun 2022 | Research Library,  Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Modeling, Plasma Research, Simulation, Stability, Theory, Transport, Turbulence

June 2022 | A.Necas | TOFE | Poster

The C-2W experiment is a FRC with the addition of external actuators including NB injection, EB, and magnetic expander divertors to provide SOL pumping

Automatic inference and control of field reversed configuration plasmas in C-2W

Jun 2022 | Research Library,  Presentations, Diagnostics, Equilibrium, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Overview, Performance, Plasma Research, Stability

June 2022 | J. Romero | TOFE | Presentation

C-2W is the world’s first steady-state FRC with fusion relevant parameters, C-2W machine and diagnostics are upgraded often in response to the research needs.

Plasma control and inference of field-reversed configuration in C-2W

Nov 2021 | Research Library,  Presentations, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Performance, Plasma Research, Stability, Theory

November 2021 | J. Romero | ITC30 | Presentation

C-2W is the world’s first steady-state FRC with fusion relevant parameters. C-2W machine and diagnostics are upgraded often in response to the research needs.

Fast Ion Stabilization of the Internal Tilt Mode in C-2W

Nov 2021 | Research Library,  Posters, Experiment, Fast Particles, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Instabilities, Plasma Research, Stability

November 2021 | T. DeHaas | APS-DPP 2021 | Poster

Traditional FRCs are known to be theoretically unstable to an internal tilt mode whose threshold is characterized by the parameter S*/E.

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