DocumentCode :
1392671
Title :
Sputtering and Thermal Evaporation Studies of Lithiated ATJ Graphite
Author :
Ibano, K. ; Surla, V. ; Ruzic, D.N.
Author_Institution :
Dept. of Nucl., Plasma, & Radiol. Eng., Univ. of Illinois at Urbana-Champaign, Urbana, IL, USA
Volume :
38
Issue :
3
fYear :
2010
fDate :
3/1/2010 12:00:00 AM
Firstpage :
341
Lastpage :
345
Abstract :
Sputtering yields and thermal evaporation fluxes of lithium and lithiated ATJ graphite are studied. Sputtering yields are measured for the ATJ graphite by lithium ion bombardment at 45?? incidence, with 700-2000 eV accelerations. Typically, 4 ?? 1013 ions/(cm2 ?? s) flux of Li ion beam is obtained from LiCl powder in a Colutron ion source. Sputtered particles are collected by a quartz crystal microbalance to determine sputtering yields. The experiment is repeated after Li is evaporated onto the ATJ graphite target. Suppressed amounts of sputtered particles are observed after Li treatment. Deuterium (D) saturation treatment for lithiated graphite is also done to simulate actual divertor conditions. The sputtering yield after D saturation does not show distinct difference with nonsaturated samples. In addition, thermal evaporation fluxes of Li on stainless steel (SS) and intercalated Li in the ATJ graphite are measured. An interesting finding is that Li in graphite shows a magnitudeless evaporation flux than Li on SS for surface temperatures ranging from 250??C to 500??C.
Keywords :
Tokamak devices; fusion reactor divertors; graphite; lithium; microbalances; plasma toroidal confinement; sputtering; stainless steel; vacuum deposition; C; Colutron ion source; FeCCrJk; Li; deuterium saturation treatment; divertor conditions; electron volt energy 700 eV to 2000 eV; ion bombardment; lithiated ATJ graphite; magnitudeless evaporation flux; quartz crystal microbalance; sputtering; stainless steel; temperature 250 degC to 500 degC; thermal evaporation; Acceleration; Deuterium; Ion sources; Lithium; Plasma confinement; Plasma temperature; Sputtering; Steel; Temperature measurement; Divertor; graphite; lithium; sputtering;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2009.2037907
Filename :
5395626
Link To Document :
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