Pairing square-root-area-weighted vacuum perturbations with full-area-weighted resonant fields produces a coupling matrix whose singular values and reconstructed real-space patterns are invariant to coordinate choice.
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Two-fluid simulations reveal bootstrap-current-driven mode penetration distinct from classical tearing modes and strong stabilization by diamagnetic drift flow, plus pressure-driven island width oscillations.
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Coordinate-invariant flux-surface Fourier analysis in tokamaks
Pairing square-root-area-weighted vacuum perturbations with full-area-weighted resonant fields produces a coupling matrix whose singular values and reconstructed real-space patterns are invariant to coordinate choice.
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Screening effect of plasma flow on the resonant magnetic perturbation penetration in tokamak based on two-fluid model
Two-fluid simulations reveal bootstrap-current-driven mode penetration distinct from classical tearing modes and strong stabilization by diamagnetic drift flow, plus pressure-driven island width oscillations.