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A Movable Thomson Scattering System Based on Optical Fibers (TS-Probe)

机译:基于光纤的可移动Thomson散射系统(TS-Probe)

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摘要

This paper proposes a movable compact Thomson scattering (TS) system based on optical fibers (TS-probe). The TS-probe consists of a probe head, optical fibers, a laser diode, a polychromator, and lock-in amplifiers. Laser beam optics and light collection optics are mounted rigidly on a probe head with a fixed scattering position. Laser light and scattered light are transmitted by flexible optical fibers, enabling us to move the TS-probe head freely during plasma discharge. The light signal scattered from an amplitude-modulated laser is detected against the plasma light based on the principle of the lock-in amplifier. With a modulated laser power of 300 W, the scattered signal from a sheet plasma 15 mm deep with ne ?1019 m?3 can be measured with 10 % accuracy by setting the integrating time to 0.1 s. The TS-probe head is similar to a 1/20 model of the currently operating Large Helical Device-TS.
机译:本文提出了一种基于光纤(TS-probe)的可移动紧凑型汤姆森散射(TS)系统。 TS探针由探头,光纤,激光二极管,多色仪和锁定放大器组成。激光束光学器件和集光光学器件牢固地安装在具有固定散射位置的探头上。激光和散射光通过柔性光纤传输,使我们能够在等离子放电期间自由移动TS探针头。根据锁定放大器的原理,针对等离子光检测从调幅激光器散射的光信号。使用300 W的调制激光功率,通过将积分时间设置为0.1 s,可以以10%的精度测量来自15 mm深,ne = 1019 m?3的片状等离子体的散射信号。 TS探针头类似于当前运行的大型螺旋设备TS的1/20型号。

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