Upgraded divertor Thomson scattering system on DIII-D.

Rev Sci Instrum

General Atomics, P.O. Box 85608, San Diego, California 92186-5608, USA.

Published: November 2016

A design to extend the unique divertor Thomson scattering system on DIII-D to allow measurements of electron temperature and density in high triangularity plasmas is presented. Access to this region is selectable on a shot-by-shot basis by redirecting the laser beam of the existing divertor Thomson system inboard - beneath the lower floor using a moveable, high-damage threshold, in-vacuum mirror - and then redirecting again vertically. The currently measured divertor region remains available with this mirror retracted. Scattered light is collected from viewchords near the divertor floor using in-vacuum, high temperature optical elements and relayed through the port window, before being coupled into optical fiber bundles. At higher elevations from the floor, measurements are made by dynamically re-focusing the existing divertor system collection optics. Nd:YAG laser timing, analysis of the scattered light spectrum via polychromators, data acquisition, and calibration are all handled by existing systems or methods of the current multi-pulse Thomson scattering system. Existing filtered polychromators with 7 spectral channels are employed to provide maximum measurement breadth (T in the range of 0.5 eV-2 keV, n in the range of 5 × 10-1 × 10 m) for both low T in detachment and high T measurement up beyond the separatrix.

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http://dx.doi.org/10.1063/1.4955281DOI Listing

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