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Development of a Bright Polychromator for Thomson Scattering Measurements

Plasma and Fusion Research · 2010 · Vol. 5 · pp. S2082–S2082
A. EjiriTakashi YamaguchiJ. HiratsukaY. TakaseMakoto HasegawaK. Narihara

Abstract

A bright polychromator for compact, efficient YAG Thomson scattering measurement was designed on the basis of ray-tracing calculations. The optical input of the polychromator is a 2-mm-diameter optical fiber with a numerical aperture of 0.37. High refractive index glass lenses with monolayer anti-reflection coatings were used to reduce aberration effects and achieve good efficiency. A fast, low-noise detection system consisting of an avalanche photodiode and operational amplifiers was designed and tested using YAG laser pulses; the measured full width at half maximum (FWHM) of the laser pulse was 10 ns. The measured noise was dominated by the thermal noise of the input resistance R (= 470 Ω) when the signal was low, and the shot noise became dominant when the number of detected photons was greater than about 500.

Solid State Laser TechnologiesLaser Design and ApplicationsAdvanced Optical Sensing TechnologiesOpticsNumerical apertureThomson scatteringNoise (video)Full width at half maximumLaserPhysicsMaterials scienceShot noisePhotodiode

Funding

  • Japan Society for the Promotion of Science
  • National Institute for Fusion Science
Citations
21
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1.17
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6
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80%
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Development of a Bright Polychromator for Thomson Scattering Measurements · Scinovex