A novel polychromator calibration method for Thomson scattering diagnostics

Author:

Xie Q. F.12,Li H. Y.12,Tao R. Y.12,Li N.12,Li S. J.12ORCID,Liu J. H.12,Lun X. C.12,Bai R. H.12,Deng B. H.12ORCID

Affiliation:

1. Hebei Key Laboratory of Compact Fusion, Langfang 065001, China

2. ENN Science and Technology Development Co., Ltd., Langfang 065001, China

Abstract

Polychromators are most frequently used in Thomson scattering (TS) diagnostics to analyze the scattered light spectrum and intensity so that the plasma electron temperature (Te) and density (ne) can be derived. For Te measurements, the spectral response of the polychromator channels and the relative spectral responsivities need to be calibrated. The spectral response is calibrated with a bromine tungsten lamp and a monochromator in a conventional way. A novel method for calibrating the relative spectral responsivities of the polychromators is described in detail. A broadband pulsed Light Emission Diode (LED) is used, which has a spectral irradiance similar to that of the TS spectrum, and the LED can be driven in pulse mode with the pulse width similar to the TS signal pulse width of about 10–20 ns full width at half maximum. This new method allows for the calibration to be done after the polychromator is fully installed, and in situ system calibration can be easily performed, showing the advantages of accuracy, simplicity, efficiency, and flexibility. For ne measurements, absolute sensitivity calibration is done by Rayleigh scattering with argon gas. Formulas for calculating the plasma density from the calibration data and the polychromator signals from the off-laser wavelength channels are presented.

Funder

Hebei Province Science and Technology Support Program

Publisher

AIP Publishing

Subject

Instrumentation

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