Progress towards high-performance steady-state operation on DIII-D

Advanced Tokamak research in DIII-D seeks to develop a scientific basis for steady-state high-performance tokamak operation. Fully noninductive ( f NI ≈ 100%) in-principle steady-state discharges have been maintained for several confinement times. These plasmas have weak negative central shear with...

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Veröffentlicht in:Fusion engineering and design 2006-11, Vol.81 (23), p.2807-2815
Hauptverfasser: Greenfield, C.M., Murakami, M., Garofalo, A.M., Doyle, E.J., Ferron, J.R., Wade, M.R., Austin, M.E., Allen, S.L., Burrell, K.H., Casper, T.A., DeBoo, J.C., Gohil, P., Gorelov, I.A., Groebner, R.J., Heidbrink, W.W., Hyatt, A.W., Jackson, G.L., Jayakumar, R.J., Kajiwara, K., Kessel, C.E., Kinsey, J.E., Kim, J.Y., La Haye, R.J., Lao, L.L., Lohr, J., Luce, T.C., Luo, Y., Makowski, M.A., Mazon, D., McKee, G.R., Okabayashi, M., Osborne, T.H., Petty, C.C., Petrie, T.W., Pinsker, R.I., Prater, R., Politzer, P.A., Reimerdes, H., Rhodes, T.L., Sips, A.C.C., Scoville, J.T., Solomon, W.M., Staebler, G.M., St. John, H.E., Strait, E.J., Taylor, T.S., Turnbull, A.D., Van Zeeland, M.A., Wang, G., West, W.P., Zeng, L.
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