DocumentCode
3220339
Title
Improved virtual cathode formation in Inertial Electrostatic Confinement
Author
McEvoy, A.M. ; Kim, Y.H. ; Herrmann, H.W.
Author_Institution
Los Alamos Nat. Lab., Los Alamos, NM, USA
fYear
2009
fDate
1-5 June 2009
Firstpage
1
Lastpage
1
Abstract
Summary form only given. Continued experimentation on the inertial electrostatic confinement (IEC) of ions in a virtual cathode potential well at Los Alamos National Laboratory (LANL) is presented. The IEC virtual cathode is formed by focusing six diametrically opposed electron beams to the center of a spherical vacuum chamber. The electrons are accelerated using two highly transparent, concentric spherical grids held at positive potential. The converging electron beams generate a parabolic potential well inside of the innermost grid, which is measured using a tungsten filament emissive probe. Ions created inside of the virtual cathode will remain trapped, with the maximum ion energy determined by the well depth. Recent upgrades to the LANL IEC device have produced virtual cathode well depths greater than 60% of the applied grid voltage. These upgrades include: modified , a new 13 kV Marx bank pulsed power supply, and an improved gas injection system. Continued experiments will increase the applied voltages further into the fusion-relevant regime to study the feasibility of a net gain IEC fusion reactor. Additionally, previous experiments at LANL have confirmed the so called (POPS): a resonant, phase-locked radial oscillation of the IEC plasma induced by applying an ion-specific RF driving frequency to the innermost grid. The implementation of POPS oscillations has been observed to extend the lifetime of the virtual cathode potential well. This extended lifetime is likely due to the resonant heating and eventual ejection of trapped ions that degrade the virtual cathode. The most recent experimental POPS data will be presented along with plans for future POPS experiments.
Keywords
plasma beam injection heating; plasma confinement; plasma diagnostics; plasma oscillations; IEC fusion reactor; IEC virtual cathode; LANL IEC device; Marx bank pulsed power supply; POPS oscillations; electron beam focusing; fusion-relevant regime; gas injection system; inertial electrostatic confinement; ion-specific RF driving frequency; maximum ion energy; parabolic potential well; periodically oscillating plasma sphere; phase-locked radial oscillation; spherical vacuum chamber; trapped ion ejection; tungsten filament emissive probe; virtual cathode potential well; voltage 13 kV; Cathodes; Electron beams; Electrostatics; IEC; Inertial confinement; Laboratories; Potential well; Pulsed power supplies; Resonance; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science - Abstracts, 2009. ICOPS 2009. IEEE International Conference on
Conference_Location
San Diego, CA
ISSN
0730-9244
Print_ISBN
978-1-4244-2617-1
Type
conf
DOI
10.1109/PLASMA.2009.5227728
Filename
5227728
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