Rees D, Fuller-Rowell T J, Lyons A, Killeen T L, Hays P B
University College London, Department of Physics & Astronomy, London WC1E 6BT, UK.
Appl Opt. 1982 Nov 1;21(21):3896-902. doi: 10.1364/AO.21.003896.
This is one of two papers which describe the development and performance of a very stable and rugged etalon designed for use in the Fabry-Perot interferometer, one of the instruments of the NASA Dynamics Explorer satellite mission, and which will obtain global measurements of the thermospheric and mesospheric wind and temperature with an accuracy of aporoximately 10 m/sec. The etalon consists of two flat plates of fused silica, with spacers constructed of Zerodur (a polycrystalline glass ceramic of extremely low expansion coefficient) which are cemented together using cyanoacrylic adhesives. This provides adequate mechanical integrity and stability for any space flight application and has a thermal expansion coefficient of the etalon cavity of <10(-7)/ degrees C.
这是两篇论文之一,描述了一种非常稳定且坚固的标准具的研制和性能。该标准具设计用于法布里-珀罗干涉仪,是美国国家航空航天局动力探测卫星任务所使用的仪器之一,它将以大约10米/秒的精度获取热层和中间层风及温度的全球测量数据。该标准具由两块熔融石英平板组成,间隔物由微晶玻璃(一种膨胀系数极低的多晶玻璃陶瓷)制成,使用氰基丙烯酸酯粘合剂将它们粘合在一起。这为任何太空飞行应用提供了足够的机械完整性和稳定性,并且标准具腔的热膨胀系数小于10^(-7)/℃。