首页> 外文期刊>等离子体科学和技术(英文版) >Space-time Resolved Spectroscopic System Based on a Rotating Hexahedral Mirror for Measurement of Visible and Ultraviolet Spectral Line Emissions
【24h】

Space-time Resolved Spectroscopic System Based on a Rotating Hexahedral Mirror for Measurement of Visible and Ultraviolet Spectral Line Emissions

机译:基于旋转六面镜的时空分辨光谱系统,用于测量可见和紫外光谱线发射

获取原文
获取原文并翻译 | 示例
       

摘要

By using a rotating hexahedral mirror placed in front of the objective lens and two sets of visible and ultraviolet monochromators coupled with a branchy quartz fiber bundle, a spacetime resolved spectroscopic system has been developed on the HT-7 superconducting tokamak. A center monitoring system has been used including a Helium-Neon laser and a photodiode detector to indicate the absolute position of the measurement in order to reduce the error caused by the uncertain emissive position of the plasma. By using the asymmetric Abel inversion, the spacetime resolved local emission coefficients of the spectroscopic line emissions have been obtained.Presented in this article are simultaneous measurements of two spectral line emissions such as CV ~ 227.1 nm and OV ~ 278.1 nm during a single plasma discharge on the HT-7. Experimental results indicate that the time resolution is better than 3 ms, the space resolution is better than 1.5 cm, the ratio of signal to background is better than 10:1, and the relative error of chord-integrated emission profile is less than 10%. Compared to traditional multichannel detecting systems, this system has considerably improved measurement efficiency, reduced uncertainty, and is therefore suitable for transport studies of global particles and impurities.
机译:通过使用放置在物镜前面的旋转六面镜和两组可见光和紫外单色仪以及分支石英纤维束,在HT-7超导托卡马克上开发了时空分辨光谱系统。为了减少由等离子体的不确定发射位置引起的误差,已经使用了包括氦氖激光器和光电二极管检测器的中心监测系统来指示测量的绝对位置。通过非对称阿贝尔反演获得了光谱线发射的时空分辨局部发射系数。本文介绍了在一次等离子体放电过程中同时测量两个光谱线发射的CV〜227.1 nm和OV〜278.1 nm的时空分辨局部发射系数。在HT-7上实验结果表明,时间分辨率优于3 ms,空间分辨率优于1.5 cm,信噪比优于10:1,弦积分发射轮廓的相对误差小于10% 。与传统的多通道检测系统相比,该系统具有显着提高的测量效率,降低的不确定性,因此适用于整体颗粒和杂质的迁移研究。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号