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An In Situ Spectral Calibration Method for the Thomson Scattering Diagnostic for New Fusion Experiments

机译:用于新融合实验的Thomson散射诊断的原位光谱校准方法

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摘要

An in situ spectral calibration method for Thomson scattering systems, which uses a double-pass scattering system, has been developed for burning plasma experiments, such as ITER and DEMO. In such machines, space for diagnostics is very limited. For Thomson scattering diagnostics, laser injection equipment and collection optics should be installed in the same port because having multiple ports for a laser and collection optics requires a large amount of space. The design makes the scattering angle wide because the collection optics must be located near the laser entrance. In addition, measurements of high electron temperature (similar to 40 keV) are necessary. This paper presents an optimization of wavelength channels for the calibration method, in which two different spectra in the double-pass scattering are considered. Using the optimized wavelength channels achieves good accuracy in electron temperature and relative transmissivities even at wide scattering angles and high T-e.
机译:已经开发了一种使用双通散射系统的Thomson散射系统的原位光谱校准方法,用于燃烧等离子实验,例如ITER和DEMO。在这样的机器中,用于诊断的空间非常有限。对于Thomson散射诊断,应将激光注入设备和收集光学器件安装在同一端口中,因为具有多个用于激光器和收集光学器件的端口需要大量空间。该设计使散射角变宽,因为收集光学器件必须位于激光入口附近。此外,必须测量高电子温度(类似于40 keV)。本文介绍了一种用于校准方法的波长通道的优化方法,其中考虑了两次通过散射中的两个不同光谱。使用优化的波长通道,即使在宽散射角和高T-e的情况下,也可以实现电子温度和相对透射率的良好精度。

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