DocumentCode :
1593620
Title :
PPPS-2013: Fast framing camera images of neutron production cessation at high currents in a Dense Plasma Focus machine
Author :
O´Brien, Robert J. ; Lowe, Daniel R. ; Meehan, Bernard T. ; Hagen, E. Chris
Author_Institution :
NSTec LLC, UNLV, Las Vegas, NV, USA
fYear :
2013
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. Imaging studies are being performed to investigate the formation, propagation and pinch point characteristics for a plasma sheet in the Dense Plasma Focus (DPF) device in Las Vegas. Deuterium is used as a working gas with r-Z pinch heating and compression at the pinch point resulting in fusion of the deuterium and the production of 2.45 MeV neutrons in a very short and intense burst of 20-50ns. During this fusion process of deuterium gas we have observed yield cessation as 1x1012 neutrons per pinch is reached. While the DPF has a maximum stored energy of 2 MJ, the production of neutrons ceases as current exceeds 3 MA. It is anticipated that images of this process will show why fusion ceases at high currents. Images of the plasma formation, movement and pinch at varying currents and phases including rundown and the pinch sequence will be discussed. Images are acquired using an ultrafast framing camera system through a large window (30" x 12") that has been installed on the vacuum chamber tube surrounding the anode/cathode of the DPF. These images are used to verify magneto-hydrodynamic (MHD) simulations and better understand why neutron yield ceases at high current with current designs. Neutron yield, current and corresponding fast framing camera images for several phases (axial run down, z-compression and pinch) of the neutron production process will be presented and discussed.
Keywords :
Z pinch; deuterium; fusion reactor fuel; fusion reactor ignition; neutron production; plasma diagnostics; plasma focus; plasma magnetohydrodynamics; plasma simulation; D; DPF anode/cathode; Dense Plasma Focus device; axial run down; current 3 MA; deuterium fusion; deuterium gas; electron volt energy 2.45 MeV; energy 2 MJ; fast framing camera images; fusion process; intense burst; magnetohydrodynamic simulations; maximum stored energy; neutron production cessation; neutron production process; neutron yield ceases; pinch point characteristics; pinch sequence; plasma formation; plasma movement; plasma sheet; r-Z pinch heating; time 20 ns to 50 ns; ultrafast framing camera system; vacuum chamber tube; working gas; yield cessation; z-compression; Cameras; Deuterium; Neutrons; Performance evaluation; Plasmas; Production;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science (ICOPS), 2013 Abstracts IEEE International Conference on
Conference_Location :
San Francisco, CA
ISSN :
0730-9244
Type :
conf
DOI :
10.1109/PLASMA.2013.6634885
Filename :
6634885
Link To Document :
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