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PPPL--2247
DE86 000583
Acceleration of Beam Ions During Major Radius Compression in TFTR
K.L. Wong, M. Bitter, G.W. Hammett, W. ieidbrink, H. Hendelt,
R. Kaita, S. Scott, J.D. Strachan, G. Tait, M.G. Bell, R. Budny, C. Bush*,
A. Chan, J. Coonrod, P.C. Efthimion, A.C. England*, H.P. Eubark,
E. Fredrickson, H.P. Fourth, R.J. Goldston, B. Grek, L. Grisham,
R.J. Hawryluk, K.W. Hill, D. Johnson, J. Kamperschroer, HF. Kugel, C. Ma*,
D. Mansfield, D. Manos, D.C. McCune, K. McGuire, 5.S. Medley, D. Mueller,
E. NieschmidtA, D.K. Owens, V.K. Pare*, H. Park, A. Ramsey, D. Rasmussen*,
A.L. Roquemore, J. Schivell, S. Sesnic, G. Taylor, M.D. Williams,
M.C. Zarnstorff.
Princeton Plasma Physics Laboratory
Princeton University, Princeton, New Jersey 08544
ABSTRACT
Tangentially co-injected deuterium beam ions were accelerated Erom 82 kev
up to 150 keV during a major radius compression experiment in TFTR. The ion
energy spectra and the variation in fusion yield were in good agreement with
Fokker-Planck code simulations. In addition, the plasma rotation velocity was
observed to rise during compression.
t RCA David Sarnaoff Research Center, Princeton, NJ, USA.
* oak Ridge National Laboratory, Oak Ridge, TN, USA.
A Idaho National Engineering Laboratory, M&G, Idaho, USA. 0 1%$a
6rt ires5 G, ,5
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Wong, K. L.; Bitter, M.; Hammett, G. W.; Heidbrink, W.; Hendel, H.; Kaita, R. et al. Acceleration of beam ions during major radius compression in TFTR, report, September 1, 1985; New Jersey. (https://digital.library.unt.edu/ark:/67531/metadc1056534/m1/2/: accessed July 16, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.