DocumentCode :
310897
Title :
Cleaning techniques for applied-b ion diodes
Author :
Cuneo, M.E. ; Menge, P.R. ; Hanson, D.L. ; Fowler, W.E. ; Bernard, M.A. ; Ziska, G.R. ; Filuk, A.B. ; Bailey, J.E. ; Desjarlais, M.P. ; Lockner, T.R. ; Nash, T.J. ; Noack, D.D. ; Slutz, S.A. ; Welch, D.R.
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM, USA
Volume :
1
fYear :
1995
fDate :
3-6 July 1995
Firstpage :
640
Abstract :
Measurements and theoretical considerations indicate that the lithium-fluoride (LiF) lithium ion source operates by electron-assisted field-desorption, and provides a pure lithium beam for 10-20 ns. Evidence on both the SABRE (1 TW) and PBFA-II (20 TW) accelerators indicates that the lithium beam is replaced by a beam of protons, and carbon resulting from electron thermal desorption of hydrocarbon surface and bulk contamination with subsequent avalanche ionization. Appearance of contaminant ions in the beam is accompanied by rapid impedance collapse, possibly resulting from loss of magnetic insulation in the rapidly expanding and ionizing neutral layer. Electrode surface and source substrate cleaning techniques are being developed on the SABRE accelerator to reduce beam contamination, plasma formation, and impedance collapse. We have increased lithium current density a factor of 3 and lithium energy a factor of 5 through a combination of in-situ surface and substrate cleaning, impermeable substrate coatings, and field profile modifications.
Keywords :
fusion reactors; ion beam applications; ion beams; ion sources; particle accelerators; particle beam fusion accelerators; plasma diodes; surface cleaning; 1 TW; 20 TW; Li; Li current density; LiF; LiF Li ion source; PBFA-II accelerator; SABRE accelerator; applied-b ion diodes; avalanche ionization; beam contamination reduction; cleaning techniques; contaminant ions; electrode surface cleaning; electron thermal desorption; electron-assisted field-desorption; expanding ionizing neutral layer; field profile modifications; hydrocarbon surface; impedance collapse; magnetic insulation; plasma formation; proton beam; pure lithium beam; source substrate cleaning; Cleaning; Diodes; Ion accelerators; Lithium; Magnetic field measurement; Particle beams; Plasma accelerators; Pollution measurement; Surface contamination; Surface impedance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Conference, 1995. Digest of Technical Papers., Tenth IEEE International
Conference_Location :
Albuquerque, NM, USA
Print_ISBN :
0-7803-2791-8
Type :
conf
DOI :
10.1109/PPC.1995.596771
Filename :
596771
Link To Document :
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