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April 12, 2012Physical Review Letters291 citationsOpen Access

Role of Zonal Flow Predator-Prey Oscillations in Triggering the Transition to H-Mode Confinement

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LSL. SchmitzLZL. ZengTRT. L. Rhodes

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Abstract

Direct evidence of zonal flow (ZF) predator-prey oscillations and the synergistic roles of ZF- and equilibrium E×B flow shear in triggering the low- to high-confinement (L- to H-mode) transition in the DIII-D tokamak is presented. Periodic turbulence suppression is first observed in a narrow layer at and just inside the separatrix when the shearing rate transiently exceeds the turbulence decorrelation rate. The final transition to H mode with sustained turbulence and transport reduction is controlled by equilibrium E×B shear due to the increasing ion pressure gradient.

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Schmitz et al. (2012) studied this question.

synapsesocial.com/papers/6a1019f79e54838161fdb90ehttps://doi.org/10.1103/physrevlett.108.155002
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