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Maintaining flatness of a large aperture potassium bromide beamsplitter through mounting and vibration

机译:通过安装和振动保持大型孔径溴化钾束梁的平坦度

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The Composite Infrared Spectrometer (CIRS) instrument on the Cassini Mission launched in October of 1997. The CIRS instrument contains a mid-infrared (MIR) and a far-infrared interferometer (FIR) and operates at 170 Kelvin. The MIR is a Michelson Fourier transform spectrometer utilizing a 76 mm (3 inch) diameter potassium bromide beamsplitter and compensator pair. The potassium bromide elements were tested to verify effects of cooldown and vibration prior to integration into the instrument. The instrument was then aligned at ambient temperatures, tested cryogenically and re-verified after vibration. The stringent design optical figure requirements for the beamsplitter and compensator included fabrication errors, mounting stresses and vibration load effects. This paper describes the challenges encountered in mounting the elements to minimize distortion and to survive vibration.
机译:复合红外光谱仪(CIRS)仪表于1997年10月推出的Cassini任务。CIRS仪器含有中红外(MIR)和远红外干涉仪(FIR),并在170个Kelvin运行。 MIR是一种利用76毫米(3英寸)的溴化钾束梁和补偿器对的迈克尔逊傅里叶变换光谱仪。测试溴化钾元素以验证在整合到仪器之前的冷却和振动的效果。然后将仪器在环境温度下对准,在振动后低温测试并重新验证。 Beamplitter和补偿器的严格设计光学数字要求包括制造误差,安装应力和振动负荷效果。本文介绍了安装元件以最小化失真和存活振动的挑战。

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