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Study of a DCN Laser Interferometer/Polarimeter for EAST Tokamak

机译:DCN激光干涉仪/东托卡马克偏振仪的研究

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The experimental advanced superconducting tokamak (EAST) is a non-circular advanced steady-state experimental device. The first plasma discharge has been achieved successfully on the EAST in 2006. Single-null (SN) and double-null (DN) diverter plasmas discharges have also been achieved successfully on the EAST tokamak in 2007. A five-channel vertical DCN laser interferometer/polarimeter system will be constructed on the EAST device. The system will be used mainly for getting electron density profile and poloidal current profile, and for a density feedback control simultaneously. Three 195 μm (1.54THz) continuous-wave glow discharge deuterium cyanide (DCN) lasers are implemented as beam sources. The system employs a three-wavelength configuration that simultaneously produces interferometric phase shift and Faraday rotation polarimetric data from a single detector for each channel. The optical system including optics inside the completely sealed frame has been designed in the consideration of long beam paths in a narrow diagnostics port and avoiding loss of laser power when laser passes through the moist atmosphere. By the same token, high sensitivity THz InSb detector system will be used in this interferometer/polarimeter system.
机译:实验先进的超导Tokamak(东)是一种非圆形先进的稳态实验装置。 2006年东部成功地在东部成功实现了第一等离子体放电。2007年东托卡马克也成功地实现了单零(SN)和双核(DN)转向等离子体排放。五通道垂直DCN激光干涉仪/偏振仪系统将在东部设备上构建。该系统将主要用于获得电子密度曲线和针状电流轮廓,并同时用于密度反馈控制。三种195μm(1.54个)连续波辉光放电氘氰化物(DCN)激光器被实施为光束源。该系统采用三波长配置,其同时从每个通道从单个检测器产生干涉相移和法拉第旋转偏振数据。在完全密封框架内的光学系统包括在窄诊断端口中的长光束路径中设计的光学系统,并在激光穿过潮湿的气氛时避免激光功率的损失。通过同样的令牌,高灵敏度THz INSB检测器系统将用于该干涉仪/偏振仪系统。

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