Stability of highly shifted equilibria in a large aspect ratio low-field tokamak

In the long run, the economics of fusion will dictate that reactors confine large plasma pressure rather efficiently. A possible route manifests itself as equilibria with large shift of the plasma magnetic axis. This shift compresses the flux surfaces on the outer part of the plasma, hereby increasi...

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Veröffentlicht in:Physics of plasmas 2007-11, Vol.14 (11)
Hauptverfasser: Gourdain, P.-A., Leboeuf, J.-N., Neches, R. Y.
Format: Artikel
Sprache:eng
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Zusammenfassung:In the long run, the economics of fusion will dictate that reactors confine large plasma pressure rather efficiently. A possible route manifests itself as equilibria with large shift of the plasma magnetic axis. This shift compresses the flux surfaces on the outer part of the plasma, hereby increasing the allowable plasma pressure a machine can confine for a given toroidal magnetic field, which is the main cost of the device. As a first step toward a reactor, we propose investigating the stability of such configurations in a low magnetic field high aspect ratio machine. By focusing our arguments solely on the shape of the toroidal plasma current density profile we discuss the stability of highly shifted equilibria and their robustness to current profile variations that could occur in actual experiments. The evolution of the plasma parameters, as the beta poloidal is increased, is also examined to give a better understanding of the difference in performance between the various regimes.
ISSN:1070-664X
1089-7674
DOI:10.1063/1.2807024