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Semi-automated high-efficiency reflectivity chamber for vacuum UV measurements

机译:半自动高效反射室,用于真空紫外线测量

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This paper presents the design and theory of operation for a semi-automated reflectivity chamber for ultraviolet optimized optics. A graphical user interface designed in LabVIEW controls the stages, interfaces with the detector system, takes semi-autonomous measurements, and monitors the system in case of error. Mirror samples and an optical photodiode sit on an optics plate mounted to a rotation stage in the middle of the vacuum chamber. The optics plate rotates the samples and diode between an incident and reflected position to measure the absolute reflectivity of the samples at wavelengths limited by the monochromator operational bandpass of 70 nm to 550 nm. A collimating parabolic mirror on a fine steering tip-tilt motor enables beam steering for detector peak-ups. This chamber is designed to take measurements rapidly and with minimal oversight, increasing lab efficiency for high cadence and high accuracy vacuum UV reflectivity measurements.
机译:本文介绍了用于紫外线优化光学系统的半自动反射率腔的设计和工作原理。 LabVIEW中设计的图形用户界面控制平台,与检测器系统连接,进行半自动测量并在出现错误时监控系统。镜面样品和一个光电二极管位于安装在真空室中间旋转台上的光学板上。光学板在入射位置和反射位置之间旋转样品和二极管,以在受单色仪工作带通限制的70 nm至550 nm波长范围内测量样品的绝对反射率。精巧的转向倾斜式电动机上的准直抛物面反射镜可实现光束转向,以达到探测器峰值。该腔室设计为可以快速进行测量,并且监督最少,从而提高了实验室效率,可进行高节奏和高精度真空UV反射率测量。

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