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- W2520781213 abstract "We consider a time-dependent linear global electrostatic toroidal fluid ion-temperature gradient (ITG) model to study the evolution of toroidal drift modes in tokamak plasmas as the equilibrium flow-shear varies with time. While we consider the ITG mode as a specific example, the results are expected to be valid for most other toroidal microinstabilities. A key result is that when there is a position in the plasma with a maximum in the instability drive (e.g. ITG), there is a transient burst of stronger growth as the flow-shear evolves through a critical value. This transient burst is expected to drive a filamentary plasma eruption, reminiscent of small-ELMs. The amplitude of the dominant linear mode is initially peaked above or below the outboard midplane, and rotates through it poloidally as the flow-shear passes through the critical value. This theoretical prediction could provide an experimental test of whether this mechanism underlies some classes of small-ELMs." @default.
- W2520781213 created "2016-09-23" @default.
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- W2520781213 date "2016-06-03" @default.
- W2520781213 modified "2023-09-25" @default.
- W2520781213 title "The response of toroidal drift modes to profile evolution: a model for small-ELMs in tokamak plasmas?" @default.
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- W2520781213 doi "https://doi.org/10.1088/0741-3335/58/7/075011" @default.
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