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A real-time laser feedback control method for the three-wave laser source used in the polarimeter-interferometer diagnostic on Joint-TEXT tokamak

机译:联合TEXT托卡马克偏振计-干涉仪诊断中使用的三波激光源实时激光反馈控制方法

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摘要

A three-wave laser polarimeter-interferometer, equipped with three independent far-infrared laser sources, has been developed on Joint-TEXT (J-TEXT) tokamak. The diagnostic system is capable of high-resolution temporal and phase measurement of the Faraday angle and line-integrated density. However, for long-term operation (>10 min), the free-running lasers can lead to large drifts of the intermediate frequencies (∼100–∼500 kHz/10 min) and decay of laser power (∼10%–∼20%/10 min), which act to degrade diagnostic performance. In addition, these effects lead to increased maintenance cost and limit measurement applicability to long pulse/steady state experiments. To solve this problem, a real-time feedback control method of the laser source is proposed. By accurately controlling the length of each laser cavity, both the intermediate frequencies and laser power can be simultaneously controlled: the intermediate frequencies are controlled according to the pre-set values, while the laser powers are maintained at an optimal level. Based on this approach, a real-time feedback control system has been developed and applied on J-TEXT polarimeter-interferometer. Long-term (theoretically no time limit) feedback of intermediate frequencies (maximum change less than ±12 kHz) and laser powers (maximum relative power change less than ±7%) has been successfully achieved.
机译:在Joint-TEXT(J-TEXT)托卡马克上开发了配备了三个独立的远红外激光源的三波激光偏振计干涉仪。该诊断系统能够对法拉第角和线积分密度进行高分辨率的时间和相位测量。但是,对于长期运行(> 10分钟),自由运行的激光会导致中频的大漂移(〜100–〜500 kHz / 10 min)和激光功率的衰减(〜10%–〜20) %/ 10分钟),这会降低诊断性能。另外,这些影响导致维护成本增加,并且限制了测量在长脉冲/稳态实验中的适用性。为了解决这个问题,提出了一种激光光源的实时反馈控制方法。通过精确地控制每个激光腔的长度,可以同时控制中频和激光功率:根据预设值控制中频,同时将激光功率保持在最佳水平。基于这种方法,开发了一种实时反馈控制系统,并将其应用在J-TEXT偏振计干涉仪上。已经成功实现了中频(最大变化小于±12 kHz)和激光功率(最大相对功率变化小于±7%)的长期(理论上没有时间限制)反馈。

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