Title :
Analysis of single pass ECH propagation and absorption experiments in MTX
Author :
Fenstermacher, M.E. ; Allen, S.L. ; Byers ; Casper ; Cohen, Ronald H. ; Foote, J. ; Hooper ; Makowski, M.A. ; Meyer, W.H. ; Moller ; Oasa, K. ; Ogawa, Tomomi ; Rice, B.W. ; Rognlien, T.D. ; Smith ; Stallard ; Thomassen ; Wood, R.D.
Abstract :
Summary form only given. An experiment is being designed to measure the single-pass propagation and absorption of electron cyclotron heating (ECH) waves in dense plasmas and to compare the results with theoretical predictions. Calculations of microwave transmission through the MTX (Microwave Tokamak Experiment) access port, propagation of the waves through the plasma, and the resulting power deposition profile on a calorimeter located on the tokamak inside wall have been performed. Ray-tracing calculations show substantial refractive spreading of the beam in the poloidal direction at densities above 1.5×1020 m-3, well within the range of the experiments. Future experiments with the free-electron laser (FEL) will also explore the nonlinear absorption of high-power ECH pulses. Calculations of the nonlinear absorption, including the spread in N|| across the beam, have been done using approximate analytic absorption coefficients and with an orbit code. The calculations are compared with data from refraction/diffraction experiments using a high toroidal field, B0=6.5 T, so that the cyclotron resonance is outside the plasma, and with absorption experiments at B0 =5.0 T, using a range of plasma densities. Detailed analysis of the density and temperature profiles from the FIR interferometer and ECE data, respectively, for several of these FEL shots was used to calculate the transmitted power fraction reaching a small microwave horn on the inside wall of the tokamak
Keywords :
Tokamak devices; plasma diagnostics; plasma heating; plasma waves; FIR interferometer; MTX; Microwave Tokamak Experiment; absorption; analytic absorption coefficients; dense plasmas; density profiles; electron cyclotron heating; far IR; free-electron laser; inside wall; microwave horn; nonlinear absorption; orbit code; plasma densities; power deposition profile; ray tracing calculations; refractive spreading; single pass ECH propagation; temperature profiles; toroidal field; transmitted power fraction;
Conference_Titel :
Plasma Science, 1990. IEEE Conference Record - Abstracts., 1990 IEEE International Conference on
Conference_Location :
Oakland, CA, USA
DOI :
10.1109/PLASMA.1990.110692