DocumentCode
2205703
Title
The role of anode and cathode plasmas in high power ion diode performance
Author
Mehlhorn, T.A. ; Bailey, J.E. ; Bernard, M.A. ; Carlson, A. ; Cuneo, M.E. ; Desjarlais, M.P. ; Filuk, A.B. ; Fowler, W.E. ; Hanson, D.L. ; Johnson, D.J. ; Lake, P. ; Lockner, T.R. ; Maron, Y. ; Menge, P.R. ; Pointon, T.D. ; Slutz, S.A. ; Stark, M.A. ; Ves
Author_Institution
Sandia Nat. Labs., Albuquerque, NM, USA
Volume
2
fYear
1996
fDate
21-26 Jul 1996
Firstpage
649
Abstract
We describe measurements, modeling, and mitigation experiments on the effects of anode and cathode plasmas in applied-B ion diodes. We have performed experiments with electrode conditioning and cleaning techniques including RF discharges, anode heating, cryogenic cathode cooling and anode surface coatings that have been successful in mitigating some of the effects of electrode contamination on ion diode performance on both the SABRE and PBFA accelerators. We are developing sophisticated spectroscopic diagnostic techniques that allow us to measure the electric and magnetic fields in the A-K gap, we compare these measured fields with those predicted by our 3-D particle-in-cell (PIC) simulations of ion diodes, and we measure anode and cathode plasma densities and expansion velocities. We are continuing to develop E-M simulation codes with fluid-PIC hybrid models for dense plasmas, in order to understand the role of electrode plasmas in ion diode performance. Our strategy for improving high power ion diode performance is to employ and expand our capabilities in measuring and modeling A-K gap plasmas and leverage our increased knowledge into an increase in total ion beam brightness to High Yield Facility (HYF) levels
Keywords
anodes; cathodes; collective accelerators; cooling; electric field measurement; heating; high-frequency discharges; ion accelerators; magnetic field measurement; plasma density; plasma diagnostics; plasma diodes; plasma production; A-K gap plasmas measurement; A-K gap plasmas modeling; PBFA accelerator; RF discharges; SABRE accelerator; anode heating; anode plasmas; anode surface coatings; applied-B ion diodes; cathode plasmas; cryogenic cathode cooling; electric field measurement; electrode cleaning techniques; electrode conditioning; high power ion diode performance; inertial confinement fusion; ion beam brightness; ion diode performance; magnetic field measurement; plasma densities measurement; plasma expansion velocities measurement; spectroscopic diagnostic techniques; Anodes; Cathodes; Density measurement; Diodes; Electrodes; Magnetic field measurement; Plasma density; Plasma measurements; Plasma simulation; Pollution measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Discharges and Electrical Insulation in Vacuum, 1996. Proceedings. ISDEIV., XVIIth International Symposium on
Conference_Location
Berkeley, CA
Print_ISBN
0-7803-2906-6
Type
conf
DOI
10.1109/DEIV.1996.545444
Filename
545444
Link To Document