Figueiredo J, Naylor G, Walsh M, Dunstan M, Scannell R, Serra F
Association EURATOM-IST, Av. Rovisco Pais, Lisboa 1049-001, Portugal.
Rev Sci Instrum. 2010 Oct;81(10):10D521. doi: 10.1063/1.3475377.
The recent upgrade to the MAST YAG Thomson scattering while enhancing the diagnostic capabilities increased the complexity of the system. There are eight YAG lasers now operational, doubling the number from the previous setup. This means alignment between each laser individually and reference points is essential to guarantee data quality and diagnostic reliability. To address this issue an alignment system was recently installed. It mimics the beams alignment in MAST by sampling 1% of the laser beam that is sent into a telescope which demagnifies by a factor of 8. The demagnified beam is viewed with a CCD camera. By scanning the camera the profile and position of the beams in the scattering zone and in a range of several meters inside MAST can be determined. Therefore alignment is checked along the beam path without having to sample it inside the vessel. The experimental apparatus and test procedures are described.
最近对MAST YAG汤姆逊散射系统的升级在增强诊断能力的同时增加了系统的复杂性。目前有八台YAG激光器投入运行,数量是之前设置的两倍。这意味着每台激光器与参考点之间的对准对于保证数据质量和诊断可靠性至关重要。为了解决这个问题,最近安装了一个对准系统。它通过对送入望远镜的1%的激光束进行采样来模拟MAST中的光束对准,该望远镜将光束缩小8倍。缩小后的光束由CCD相机观察。通过扫描相机,可以确定散射区内以及MAST内部几米范围内光束的轮廓和位置。因此,可以在光束路径上检查对准情况,而无需在容器内部对其进行采样。本文描述了实验装置和测试程序。