
Thomson Scattering Density Calibration by Rayleigh and Rotational Raman Scattering on NSTX
Author(s) -
B P LeBlanc
Publication year - 2008
Language(s) - English
Resource type - Reports
DOI - 10.2172/958411
Subject(s) - rayleigh scattering , thomson scattering , optics , scattering , stray light , calibration , raman scattering , laser , wavelength , physics , electron density , light scattering , plasma diagnostics , computational physics , raman spectroscopy , plasma , nuclear physics , quantum mechanics
The multi-point Thomson scattering (MPTS) diagnostic measures the profiles of the electron temperature Te(R) and density ne(R) on the horizontal midplane of NSTX. Normal operation makes use of Rayleigh scattering in nitrogen or argon to derive the density profile. While the Rayleigh scattering ne(R) calibration has been validated by comparison with other density measurements and through its correlation with plasma phenomena, it does require dedicated detectors at the laser wavelength in this filter polychromator based diagnostic. The presence of dust and/or stray laser light precludes routine use of these dedicated spectral channels for Thomson scattering measurement. Hence it is of interest to investigate the use of Raman scattering in nitrogen for the purpose of density calibration, since it could free up detection equipment, which could then be used for the instrumentation of additional radial channels. In this paper the viewing optics "geometrical factor" profiles obtained from Rayleigh and Raman scattering are compared. While both techniques agree nominally, residual effects on the order of 10% remain and will be discussed