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Study of Neutral Gas Pressure Dynamics in C-2W Using Inverted Magnetron Ionization Gauges

Study of Neutral Gas Pressure Dynamics in C-2W Using Inverted Magnetron Ionization Gauges

Feb 2021 | Research Library,  Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research

December 2020 | V. Sokolov | HTPD 2020 | Poster

In TAE Technologies’ current experimental device, C-2W (also called “Norman”), record breaking, advanced beam-driven FRC plasmas are produced and sustained in steady state.

A Wire Calorimeter for Direct Measurement of Neutral Beam Injection

A Wire Calorimeter for Direct Measurement of Neutral Beam Injection

Feb 2021 | Research Library,  Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research

December 2020 | J. Titus | HTPD 2020 | Poster

Four static beams (15 keV) and four tunable beams (15-40 keV) are currently operational on C-2W. A tungsten wire calorimeter was designed with the help of a two-dimensional heat transfer model to measure injected neutral beam power.

Real-Time Alignment of a Polarimeter for FRC Equilibrium Measurements on C-2W

Real-Time Alignment of a Polarimeter for FRC Equilibrium Measurements on C-2W

Feb 2021 | Research Library,  Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research

December 2020 | E. Parke | HTPD 2020 | Poster

On C-2W (also called “Norman”) record breaking, advanced beam- driven field-reversed-configuration (FRC) plasmas are produced and sustained in steady state

Measuring Energy Distribution of Neutral Beams using Doppler Shifted Spectroscopy on C-2W

Measuring Energy Distribution of Neutral Beams using Doppler Shifted Spectroscopy on C-2W

Feb 2021 | Research Library,  Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research

December 2020 | R. Marshall | HTPD 2020 | Poster

9 neutral beam injectors (8 heating beams and 1 diagnostic beam) are installed on the central cell of C-2W.

Main-Ion Charge Exchange Recombination Spectroscopy on C-2W FRC Plasmas

Main-Ion Charge Exchange Recombination Spectroscopy on C-2W FRC Plasmas

Feb 2021 | Research Library,  Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Profiles, Plasma Research

December 2020 | D. Gupta | HTPD 2020 | Poster

A five channel prototype of main-ion Charge Exchange Recombination Spectroscopy (mCHERS) diagnostic has been developed to measure the deuterium temperature and velocity in the C-2W (Norman) FRC plasma

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