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Please use this identifier to cite or link to this item: http://eprint.iitd.ac.in/handle/2074/1611

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dc.contributor.authorRama Prasad, P V S-
dc.contributor.authorA Kumar-
dc.contributor.authorSingh, S-
dc.identifier.citationPlasma Science, IEEE Transactions on, 17(4), 595 - 602en
dc.description.abstractThe effect of the density inhomogeneity on the oscillating two-stream instability of a lower hybrid pump wave with a finite wavelength is investigated. The density inhomogeneity introduces dephasing that restricts the interaction region where the matching conditions hold. The loss of energy due to convection from this region introduces a certain convection threshold for the onset of this instability. The coupled differential equations are solved in Fourier space by converting them into an uncoupled eigenvalue equation and then applying a quantization condition. Expressions are obtained for the growth rate and the convective threshold, and the results are applied to the Princeton Large Torus parametersen
dc.format.extent113106 bytes-
dc.subjectoscillating two-stream instabilityen
dc.subjecthybrid pump waveen
dc.subjectcertain convection thresholden
dc.titleOscillating two-stream instability of a lower hybrid wave in an inhomogenous plasmaen
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