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August 7, 2007Physical Review Letters106 citations

Effect of Neoclassical Toroidal Viscosity on Error-Field Penetration Thresholds in Tokamak Plasmas

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ACA.J. ColeCHC. C. HegnaJCJ. D. Callen

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Abstract

A model for field-error penetration is developed that includes nonresonant as well as the usual resonant field-error effects. The nonresonant components cause a neoclassical toroidal viscous torque that keeps the plasma rotating at a rate comparable to the ion diamagnetic frequency. The new theory is used to examine resonant error-field penetration threshold scaling in Ohmic tokamak plasmas. Compared to previous theoretical results, we find the plasma is less susceptible to error-field penetration and locking, by a factor that depends on the nonresonant error-field amplitude.

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Cole et al. (2007) studied this question.

synapsesocial.com/papers/6a6f80962163a0a01bc3cabfhttps://doi.org/10.1103/physrevlett.99.065001
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