American Nuclear Society
Home

Home / Publications / Journals / Fusion Science and Technology / Volume 37 / Number 2T

Laser-Aided Plasma Diagnositcs

C.J. Barth

Fusion Science and Technology / Volume 37 / Number 2T / March 2000 / Pages 344-351

Plasma Diagnostics / dx.doi.org/10.13182/FST00-A11963229

Published:February 8, 2018

The invention of the first laser and many others after that has led to a large amount of different plasma diagnostics using some aspect of the interaction between light and plasmas. In this paper a short review of these diagnostics is given, where the emphasis will be on Thomson scattering and Laser Induced Fluorescence. Thomson scattering is a very powerful diagnostic which is applied at nearly every magnetic confinement device. When the laser wavelength is much smaller than the plasma Debye length, the scattering spectrum is a reflection of the electron velocity distribution, from which local values for the electron temperature and density can be derived. Laser Induced Fluorescence enables to determine the neutral density of different species in the plasma.