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Transport experiments in Alcator-C-Mod

  • M. Greenwald
  • , R. L. Boivin
  • , P. Bonoli
  • , C. Christensen
  • , C. Fiore
  • , D. Garnier
  • , J. Goetz
  • , S. Golovato
  • , M. Graf
  • , R. Granetz
  • , S. Home
  • , T. Hsu
  • , A. Hubbard
  • , I. Hutchinson
  • , J. Irby
  • , C. Kurz
  • , B. LaBombard
  • , B. Lipschultz
  • , T. Luke
  • , E. Marmar
  • G. McCracken, A. Niemczewski, P. O'Shea, M. Porkolab, J. Rice, J. Reardon, J. Schachter, J. Snipes, R. Stek, Y. Takase, J. Terry, M. Umansky, R. Watterson, S. Wolfe, F. Bombarda, M. May, B. Welch

Research output: Contribution to journalArticlepeer-review

Abstract

A series of transport experiments has been carried out in Alcator-C-Mod. [Phys Plasmas 1, 1511 (1994)]. Data from both Ohmic and ICRF (ion cyclotron range of frequencies) heated plasmas can be fitted with an L-mode (low mode) scaling law. The Ohmic τE's show no scaling with density in any regime and can reach values of 2-3 times neo-Alcator. Impurity confinement has been studied with the laser blow-off technique with τI showing nearly linear scaling with plasma current. Ohmic and ICRF H modes are obtained over a wide range of discharge parameters, extending the range in the international database for nB, by almost a factor of 10. The power threshold for ELM-free (edge localized mode) discharges is in rough agreement with the scaling P/S = 0.044nB. Energy diffusivities of Ohmic and ICRF heated plasmas have been measured from local analysis of plasma profiles and power fluxes. The same analysis produces a value for plasma resistivity which lies between the Spitzer and neoclassical calculations. Analysis of plasma transients have yielded values for particle diffusivity and convection velocity.

Original languageEnglish (US)
Pages (from-to)2308-2313
Number of pages6
JournalPhysics of Plasmas
Volume2
Issue number6
DOIs
StatePublished - 1995
Externally publishedYes

All Science Journal Classification (ASJC) codes

  • Condensed Matter Physics

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