Published May 1999 | Version v1
Journal article

High-harmonic fast magnetosonic wave coupling, propagation, and heating in a spherical torus plasma

  • 1. Princeton Plasma Physics Laboratory, Princeton, New Jersey 08543 (United States)
  • 2. Johns Hopkins University, Baltimore, Maryland 21205 (United States)

Description

A novel rotatable two-strap antenna has been installed in the current drive experiment upgrade (CDX-U) [T. Jones, Ph.D. thesis, Princeton University (1995)] in order to investigate high-harmonic fast wave coupling, propagation, and electron heating as a function of strap angle and strap phasing in a spherical torus plasma. Radio-frequency-driven sheath effects are found to fit antenna loading trends at very low power and become negligible above a few kilowatts. At sufficiently high power, the measured coupling efficiency as a function of strap angle is found to agree favorably with cold plasma wave theory. Far-forward microwave scattering from wave-induced density fluctuations in the plasma core tracks the predicted fast wave loading as the antenna is rotated. Signs of electron heating during rf power injection have been observed in CDX-U with central Thomson scattering, impurity ion spectroscopy, and Langmuir probes. While these initial results appear promising, damping of the fast wave on thermal ions at high ion-cyclotron-harmonic number may compete with electron damping at sufficiently high ion β possibly resulting in a significantly reduced current drive efficiency and production of a fast ion population. Preliminary results from ray-tracing calculations which include these ion damping effects are presented. copyright 1999 American Institute of Physics

Additional details

Publishing Information

Journal Title
Physics of Plasmas
Journal Volume
6
Journal Issue
5
Journal Page Range
p. 2002-2008
ISSN
1070-664X
CODEN
PHPAEN

Conference

Title
40. annual physics of plasmas meeting, APS Division of Plasma Physics
Dates
16-20 Nov 1998
Place
New Orleans, LA (United States)

Optional Information

Secondary number(s)
CONF-981127--