Physics – Plasma Physics
Scientific paper
Nov 2008
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2008aps..dppgi1003e&link_type=abstract
American Physical Society, 50th Annual Meeting of the Division of Plasma Physics, November 17-21, 2008, abstract #GI1.003
Physics
Plasma Physics
Scientific paper
Reversed shear Alfv'en eigenmodes (RSAEs) have been identified in Alcator C-Mod plasmas between sawtooth crashes at ITER relevant densities of ne0<=1.5 ; 10^20 ; m-3 with 2-5 MW of ICRH power absorbed by H minority heating. The dependence of this phenomenon on ne, Ip and L versus H- mode confinement will be presented. The ideal MHD code NOVA [1] is used to model the RSAE spectra measured by the phase contrast imaging diagnostic and Mirnov coils and shows that qmin can relax to approximately 0.92 prior to the sawtooth crash. Furthermore, these calculations predict that the RSAEs can be unstable with even a slightly reversed shear q profile in the presence of an ICRF generated fast ion (H minority) tail. The formation of a reversed shear q profile during the sawtooth cycle may be explained using a resistive diffusion model starting with current density and temperature profiles that are centrally flattened during the sawtooth crash. Results of multiple resistivity models will be compared in light of the experimental observations. We postulate that the formation of a reversed shear q profile during the sawtooth cycle is similar to that of the current ramp where the parallel current peaks off axis [2]. The implications of these results will be discussed in relation to the observation that Alfv'en eigenmodes enhance transport [3] and that reversed shear q profiles are expected to be detrimental to core fast ion confinement.Work supported by DOE under DE-FG02-94-ER54235 and DE-FC02-99- ER54512.[1] C.Z Chen and M.S. Chance, J. Comput. Phys. 71, 124 (1987).[2] M. Porkolab et al., IEEE Transactions on Plasma Science, 34, 229 (2006).[3] W. Heidbrink et al., Phys. Rev. Lett. 99, 245002 (2007).
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