Physics of compact stellarators

Recent progress in the theoretical understanding and design of compact stellarators is described. Hybrid devices, which depart from canonical stellarators by deriving benefits from the bootstrap current which flows at finite beta, comprise a class of low aspect ratio A

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Veröffentlicht in:Physics of Plasmas 1999-05, Vol.6 (5), p.1858-1864
Hauptverfasser: Hirshman, S. P., Spong, D. A., Whitson, J. C., Nelson, B., Batchelor, D. B., Lyon, J. F., Sanchez, R., Brooks, A., Y.-Fu, G., Goldston, R. J., Ku, L-P., Monticello, D. A., Mynick, H., Neilson, G. H., Pomphrey, N., Redi, M., Reiersen, W., Reiman, A. H., Schmidt, J., White, R., Zarnstorff, M. C., Miner, W. H., Valanju, P. M., Boozer, A.
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Sprache:eng
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Zusammenfassung:Recent progress in the theoretical understanding and design of compact stellarators is described. Hybrid devices, which depart from canonical stellarators by deriving benefits from the bootstrap current which flows at finite beta, comprise a class of low aspect ratio A
ISSN:1070-664X
1089-7674
DOI:10.1063/1.873489