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Vortex and magnetostatic-mode turbulence produced by a Buchsbaum mode

Hafiz U. Rahman, Padma Kant Shukla, S. G. Tagare

Open publisher page 4 citations

Abstract

It is found that the modulational instability of a finite-amplitude Buchsbaum mode can give rise to enhanced vortex (convection cells) and magnetostatic modes in a D-T fusion plasma. The relevance of our investigation to the anomalous particle and heat losses in a Tokamak device is briefly pointed out.

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What this paper is about

It is found that the modulational instability of a finite-amplitude Buchsbaum mode can give rise to enhanced vortex (convection cells) and magnetostatic modes in a D-T fusion plasma. The relevance of our investigation to the anomalous particle and heat losses in a Tokamak device is briefly pointed out.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

It is found that the modulational instability of a finite-amplitude Buchsbaum mode can give rise to enhanced vortex (convection cells) and magnetostatic modes in a D-T fusion plasma. The relevance of our investigation to the anomalous particle and heat losses in a Tokamak device is briefly pointed out.

Key concepts: Physics, Tokamak, Turbulence, Plasma, Vortex, Mode (computer interface), Instability, Amplitude

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