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20 years of research on the Alcator C-Mod tokamak

Authors :
Greenwald, M.
Bader, A.
Baek, S.
Bakhtiari, M.
Barnard, H.
Beck, W.
Bergerson, W.
Bespamyatnov, I.
Bonoli, P.
Brower, D.
Brunner, D.
Burke, W.
Candy, J.
Churchill, M.
Cziegler, I.
Diallo, A.
Dominguez, A.
Duval, B.
Edlund, E.
Ennever, P.
Ernst, D.
Faust, I.
Fiore, C.
Fredian, T.
Garcia, O.
Gao, C.
Goetz, J.
Golfinopoulos, T.
Granetz, R.
Grulke, O.
Hartwig, Z.
Horne, S.
Howard, N.
Hubbard, A.
Hughes, J.
Hutchinson, I.
Irby, J.
Izzo, V.
Kessel, C.
Labombard, B.
Lau, C.
Li, C.
Lin, Y.
Lipschultz, B.
Loarte, A.
Marmar, E.
Mazurenko, A.
Mccracken, G.
Mcdermott, R.
Meneghini, O.
Mikkelsen, D.
Mossessian, D.
Mumgaard, R.
Myra, J.
Nelson-Melby, E.
Ochoukov, R.
Olynyk, G.
Parker, R.
Pitcher, S.
Podpaly, Y.
Porkolab, M.
Reinke, M.
Rice, J.
Rowan, W.
Schmidt, A.
Scott, S.
Shiraiwa, S.
Sierchio, J.
Smick, N.
Snipes, J. A.
Snyder, P.
Sorbom, B.
Stillerman, J.
Sung, C.
Takase, Y.
Tang, V.
Terry, J.
Terry, D.
Theiler, C.
Tronchin-James, A.
Tsujii, N.
Vieira, R.
Walk, J.
Wallace, G.
White, A.
Whyte, D.
Wilson, J.
Wolfe, S.
Wright, G.
Wright, J.
Wukitch, S.
Zweben, S.
Greenwald, M.
Bader, A.
Baek, S.
Bakhtiari, M.
Barnard, H.
Beck, W.
Bergerson, W.
Bespamyatnov, I.
Bonoli, P.
Brower, D.
Brunner, D.
Burke, W.
Candy, J.
Churchill, M.
Cziegler, I.
Diallo, A.
Dominguez, A.
Duval, B.
Edlund, E.
Ennever, P.
Ernst, D.
Faust, I.
Fiore, C.
Fredian, T.
Garcia, O.
Gao, C.
Goetz, J.
Golfinopoulos, T.
Granetz, R.
Grulke, O.
Hartwig, Z.
Horne, S.
Howard, N.
Hubbard, A.
Hughes, J.
Hutchinson, I.
Irby, J.
Izzo, V.
Kessel, C.
Labombard, B.
Lau, C.
Li, C.
Lin, Y.
Lipschultz, B.
Loarte, A.
Marmar, E.
Mazurenko, A.
Mccracken, G.
Mcdermott, R.
Meneghini, O.
Mikkelsen, D.
Mossessian, D.
Mumgaard, R.
Myra, J.
Nelson-Melby, E.
Ochoukov, R.
Olynyk, G.
Parker, R.
Pitcher, S.
Podpaly, Y.
Porkolab, M.
Reinke, M.
Rice, J.
Rowan, W.
Schmidt, A.
Scott, S.
Shiraiwa, S.
Sierchio, J.
Smick, N.
Snipes, J. A.
Snyder, P.
Sorbom, B.
Stillerman, J.
Sung, C.
Takase, Y.
Tang, V.
Terry, J.
Terry, D.
Theiler, C.
Tronchin-James, A.
Tsujii, N.
Vieira, R.
Walk, J.
Wallace, G.
White, A.
Whyte, D.
Wilson, J.
Wolfe, S.
Wright, G.
Wright, J.
Wukitch, S.
Zweben, S.
Publication Year :
2015

Abstract

The object of this review is to summarize the achievements of research on the Alcator C-Mod tokamak [Hutchinson et al., Phys. Plasmas 1, 1511 (1994) and Marmar, Fusion Sci. Technol. 51, 261 (2007)] and to place that research in the context of the quest for practical fusion energy. C-Mod is a compact, high-field tokamak, whose unique design and operating parameters have produced a wealth of new and important results since it began operation in 1993, contributing data that extends tests of critical physical models into new parameter ranges and into new regimes. Using only high-power radio frequency (RF) waves for heating and current drive with innovative launching structures, C-Mod operates routinely at reactor level power densities and achieves plasma pressures higher than any other toroidal confinement device. C-Mod spearheaded the development of the vertical-target divertor and has always operated with high-Z metal plasma facing components-approaches subsequently adopted for ITER. C-Mod has made ground-breaking discoveries in divertor physics and plasma-material interactions at reactor-like power and particle fluxes and elucidated the critical role of cross-field transport in divertor operation, edge flows and the tokamak density limit. C-Mod developed the I-mode and the Enhanced D alpha H-mode regimes, which have high performance without large edge localized modes and with pedestal transport self-regulated by short-wavelength electromagnetic waves. C-Mod has carried out pioneering studies of intrinsic rotation and demonstrated that self-generated flow shear can be strong enough in some cases to significantly modify transport. C-Mod made the first quantitative link between the pedestal temperature and the H-mode's performance, showing that the observed self-similar temperature profiles were consistent with critical-gradient-length theories and followed up with quantitative tests of nonlinear gyrokinetic models. RF research highlights include direct experimental obs

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1366015169
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1063.1.4901920