Overview Of Inertial Electrostatic Confinement Plasma Physics Research At The University Of Wisconsin.pdf

MWS_DPP12-2012-001435.pdf
Preview of Overview of Inertial Electrostatic Confinement Plasma Physics Research at the University of Wisconsin
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Summary

The University of Wisconsin's research on Inertial Electrostatic Confinement (IEC) plasma physics, presented at the DPP12 Meeting of The American Physical Society, focuses on IEC fusion devices that accelerate ions to fusion-relevant velocities using a voltage difference between nearly transparent electrodes. Key achievements include generating ~10^8 steady-state and ~10^10 pulsed DD neutrons per second, along with ~10^8 D3He protons per second, enabling detection of highly enriched uranium and C-4 explosives, and producing radioisotopes for positron emission tomography. An upgraded 300 kV, 200 mA power supply is expected to enhance fusion reaction rates in 2012. Current research areas include theoretical analysis of ion and neutral flow, negative-ion production, fusion reactions, converging ion beams, and ion-surface interactions. Diagnostic developments involve charged fusion product Doppler-shift and time-of-flight, movable Faraday cup, and double Langmuir probe. The research is funded by DOE, the Greatbatch Foundation, and the Grainger Foundation.

Description

Inertial-electrostatic confinement (IEC) fusion devices accelerate ions to fusion-relevant velocities using a voltage difference between electrodes. University of Wisconsin IEC research has produced high neutron and proton yields, including detection of highly enriched uranium and production of radioisotopes. A new 300 kV power supply will enhance research capabilities.

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  • File Format: PDF
  • File Size: 19 KB
  • Pages: 1
  • Language: EN
  • Total Downloads: 31
  • Last Updated: 7 hours ago

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