Nov 2013 | Posters, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Impurities, Plasma Research, Research Library
November 2013 | D. Gupta | APS-DPP | Poster
To better understand and quantify the radial momentum balance in the C2 FRC plasma, experiments are performed with the mixture of Helium and Deuterium.
Nov 2013 | Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Waves
November 2013 | E. Garate | APS-DPP | Poster
Field reversed configurations (FRC) have closed field line regions in which the ratio of plasma to electron cyclotron frequency is greater than 1.
Nov 2013 | Posters, Diagnostics, Experiment, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library
November 2013 | B. Deng | APS-DPP | Poster
Ideal FRC configuration has zero toroidal field.
Nov 2013 | Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Waves
November 2013 | F. Cecherini | APS-DPP | Poster
The generation and propagation of an ion cyclotron resonant wave is studied in a Field Reversed Configuration (FRC) plasma which includes at least two different ion species.
Nov 2013 | Posters, Diagnostics, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation
November 2013 | S. Aefsky | APS-DPP | Poster
The electron temperature of the plasma inside the C-2 Experiment is measured using a Thomson Scattering (TS) diagnostic.
Nov 2013 | Posters, Experiment, Fast Particles, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library
November 2013 | R. Magee | APS-DPP | Poster
The C-2 field-reversed configuration (FRC) plasmas are created via the dynamic merging of two compact toroids and partially sustained through the injection of high power neutral beams.