Tokamak Plasmas with Density up to 10 Times the Greenwald Limit

Current-carrying, toroidal laboratory plasmas typically cannot be sustained with an electron density above the empirical Greenwald limit. Presented here are tokamak experiments in the Madison Symmetric Torus with a density up to an unprecedented level about 10 times this limit. This is thought to be...

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Veröffentlicht in:Physical review letters 2024-08, Vol.133 (5), p.055101, Article 055101
Hauptverfasser: Hurst, N C, Chapman, B E, Sarff, J S, Almagri, A F, McCollam, K J, Den Hartog, D J, Flahavan, J B, Forest, C B
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Sprache:eng
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Zusammenfassung:Current-carrying, toroidal laboratory plasmas typically cannot be sustained with an electron density above the empirical Greenwald limit. Presented here are tokamak experiments in the Madison Symmetric Torus with a density up to an unprecedented level about 10 times this limit. This is thought to be made possible in part by a thick, stabilizing, conductive wall, and a high-voltage, feedback-controlled power supply driving the plasma current. The radial profile of the toroidal current flattens around twice the limit, without the edge collapse routinely observed in other experiments.
ISSN:0031-9007
1079-7114
1079-7114
DOI:10.1103/PhysRevLett.133.055101