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Studies of challenge in lower hybrid current drive capability at high density regime in experimental advanced superconducting tokamak
by
Li, Y. C.
, Ding, B. J.
, Li, J. G.
, Wan, B. N.
, Li, M. H.
, Liu, F. K.
, Shan, J. F.
, Wang, M.
in
Fusion
/ Fusion reactors
/ Nuclear reactors
/ Plasma physics
/ Reactors
/ Solved and Unsolved Problems in Plasma Physics: Nathaniel J. Fisch Symposium
2017
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Studies of challenge in lower hybrid current drive capability at high density regime in experimental advanced superconducting tokamak
by
Li, Y. C.
, Ding, B. J.
, Li, J. G.
, Wan, B. N.
, Li, M. H.
, Liu, F. K.
, Shan, J. F.
, Wang, M.
in
Fusion
/ Fusion reactors
/ Nuclear reactors
/ Plasma physics
/ Reactors
/ Solved and Unsolved Problems in Plasma Physics: Nathaniel J. Fisch Symposium
2017
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Studies of challenge in lower hybrid current drive capability at high density regime in experimental advanced superconducting tokamak
by
Li, Y. C.
, Ding, B. J.
, Li, J. G.
, Wan, B. N.
, Li, M. H.
, Liu, F. K.
, Shan, J. F.
, Wang, M.
in
Fusion
/ Fusion reactors
/ Nuclear reactors
/ Plasma physics
/ Reactors
/ Solved and Unsolved Problems in Plasma Physics: Nathaniel J. Fisch Symposium
2017
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Studies of challenge in lower hybrid current drive capability at high density regime in experimental advanced superconducting tokamak
Journal Article
Studies of challenge in lower hybrid current drive capability at high density regime in experimental advanced superconducting tokamak
2017
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Overview
Aiming at a fusion reactor, two issues must be solved for the lower hybrid current drive (LHCD), namely good lower hybrid wave (LHW)–plasma coupling and effective current drive at high density. For this goal, efforts have been made to improve LHW–plasma coupling and current drive capability at high density in experimental advanced superconducting tokamak (EAST). LHW–plasma coupling is improved by means of local gas puffing and gas puffing from the electron side is taken as a routine way for EAST to operate with LHCD. Studies of high density experiments suggest that low recycling and high lower hybrid (LH) frequency are preferred for LHCD experiments at high density, consistent with previous results in other machines. With the combination of 2.45 GHz and 4.6 GHz LH waves, a repeatable high confinement mode plasma with maximum density up to
$4.5\\times 10^{19}~\\text{m}^{-3}$
was obtained by LHCD in EAST. In addition, in the first stage of LHCD cyclic operation, an alternative candidate for more economical fusion reactors has been demonstrated in EAST and further work will be continued.
Publisher
Cambridge University Press
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