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High loading precision rotation stage design for synchrotron radiation mirror stitching measurement

Authors :
Ming-Ying Hsu
Duan-Jen Wang
Gung-Chian Yin
Chien-Yu Lee
Bo-Yi Chen
Yu-Shan Huang
Hok-Sum Fung
Shang-Wei Lin
Source :
Optomechanical Engineering 2019.
Publication Year :
2019
Publisher :
SPIE, 2019.

Abstract

The project “High loading precision rotation stage design for synchrotron radiation mirror measurement” aims to provide an ultra-high-precision heavy-duty rotation stage and X-ray mirror interference optical measurements. Since the shape of an X-ray lens is very different from that of the general visible optical lens, the measurement system is very different from the general visible light optical measurement system. This paper describes a high-load precision rotating platform for obtaining stitching interferometer measurements for a synchrotron radiation mirror. The synchrotron radiation mirror is usually rectangular, and the length is greater than the interferometer measurement size. Therefore, for the mirror measurement, the stitching method is usually used to obtain synchrotron radiation mirror measurements. The interference measurements are obtained at different positions. In order to obtain the measurements, the center line of the interferometer must be perpendicular to the tangent of the mirror surface, so that appropriate interference fringes can be obtained. As the mirror radius becomes smaller, the interferometer rotation angle sensitivity increases. Development of the stitching interferometer high-load precision rotating platform design target requires an angle rotation resolution

Details

Database :
OpenAIRE
Journal :
Optomechanical Engineering 2019
Accession number :
edsair.doi...........d523ac59e2c52215d792ecd38d95acb0