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Performance evaluation of short-wavelength FIR laser polarimeter with dual silicon photoelastic modulators

机译:具有双硅光弹性调制器的短波长FIR激光旋光仪的性能评估

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Measurement of an internal magnetic field distribution in magnetically confined fusion devices is indispensable for both understanding the plasma physics and controlling plasmas. A polari-interferometer based on the Faraday effect has been used for such a purpose. This paper describes performance evaluations of a part of the polarimeter with photoelastic modulators (PEMs) of the short-wavelength far-infrared (FIR) laser polari-interferometer. The wavelengths of the light source are 57.2 and 47.7 m, which are suitable for a high-density operation and large fusion devices. The PEM for the FIR region is newly developed with high-resistive silicon in which absorption of the FIR laser is small. The polarization angle is successfully measured and an angle resolution of 0.01 with a time resolution of 1ms is achieved. A drift of the baseline of about 0.1 for 1000s is observed and is found to be caused by changes in the room temperature.
机译:磁约束聚变设备内部磁场分布的测量对于理解等离子体物理学和控制等离子体都是必不可少的。基于法拉第效应的偏振干涉仪已经用于这种目的。本文介绍了使用短波长远红外(FIR)激光偏振干涉仪的光弹调制器(PEM)对偏振计的一部分进行的性能评估。光源的波长为57.2和47.7 m,适用于高密度操作和大型聚变设备。 FIR区域的PEM是用高电阻硅最新开发的,而FIR激光的吸收很小。成功测量了偏振角,并获得了0.01的角度分辨率和1ms的时间分辨率。观察到基线在1000 s内大约有0.1的漂移,并且发现是由室温变化引起的。

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