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Overview of C-2U FRC Experimental Program and Plans for C-2W

Overview of C-2U FRC Experimental Program and Plans for C-2W

Feb 2016 | Research Library,  Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Overview, Performance, Plasma Research

October 2016 | Hiroshi Gota | EPR2016 | Poster

The experimental program at TAE Technologies has been focused on a demonstration of reliable field-reversed configuration (FRC) formation and sustainment, driven by fast ions via high-power neutral-beam (NB) injection.

High Voltage Power Supply for Electrode Test Stand

High Voltage Power Supply for Electrode Test Stand

May 2015 |  Posters, Edge Control, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library

May 2015 | M. Slepchenkov | 2015 SOFE | Poster

The Electrode Test Stand is an experimental device for studying electrode physics contributing to the design of future fusion machines.

Development of Compact Toroid Injector for C-2 FRCs

Development of Compact Toroid Injector for C-2 FRCs

Oct 2014 |  Posters, Experiment, Fueling, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library

October 30, 2014 | T. Matsumoto | APS-DPP | Poster

A collaborative research project with TAE Technologies has been started and we have developed a new compact toroid (CT) injector for the C-2 device, mainly for fueling field-reversed configurations (FRCs).

Time-evolution of ion-temperature radial profiles for high performance FRC (HPF) plasma in C-2

Time-evolution of ion-temperature radial profiles for high performance FRC (HPF) plasma in C-2

Oct 2014 |  Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library

October 2014 | D. Gupta | APS-DPP | Poster

Measurements of ion temperature profile and its time evolution is important for the understanding of FRC confinement and transport properties.

Propagation and dynamics of microwaves in the ECRH frequency range for the FRC

Propagation and dynamics of microwaves in the ECRH frequency range for the FRC

Oct 2014 |  Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Waves

October 2014 | F. Ceccherini | APS-DPP | Poster

A previously developed Finite Larmor Radius (FLR) code for ICRH studies in cylindrical geometry has been recently extended to include the frequency range of interest for ECRH applications.

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