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Testing and Calibration of Phase Plates for JWST Optical Simulator

机译:JWST光学模拟器的相板测试和校准

摘要

Three phase plates were designed to simulate the JWST segmented primary mirror wavefront at three on-orbit alignment stages: coarse phasing, intermediate phasing, and fine phasing. The purpose is to verify JWST's on-orbit wavefront sensing capability. Amongst the three stages, coarse alignment is defined to have piston error between adjacent segments being 30 m to 300 m, intermediate being 0.4 m to 10 m, and fine is below 0.4 m. The phase plates were made of fused silica, and were assembled in JWST Optical Simulator (OSIM). The piston difference was realized by the thickness difference of two adjacent segments. The two important parameters to phase plates are piston and wavefront errors. Dispersed Fringe Sensor (DFS) method was used for initial coarse piston evaluation, which is the emphasis of this paper. Point Diffraction Interferometer (PDI) is used for fine piston and wavefront error. In order to remove piston's 2 pi uncertainty with PDI, three laser wavelengths, 640nm, 660nm, and 780nm, are used for the measurement. The DHS test setup, analysis algorithm and results are presented. The phase plate design concept and its application (i.e. verifying the JWST on-orbit alignment algorithm) are described. The layout of JWST OSIM and the function of phase plates in OSIM are also addressed briefly.
机译:设计了三个相位板来模拟在轨对准三个阶段的JWST分段主镜波前:粗调相,中间调相和精细调相。目的是验证JWST的在轨波前感应能力。在这三个阶段中,粗调定义为相邻段之间的活塞误差为30 m至300 m,中间段为0.4 m至10 m,而细度低于0.4 m。相板由熔融石英制成,并在JWST光学模拟器(OSIM)中组装。活塞差是通过两个相邻节段的厚度差实现的。相位板的两个重要参数是活塞和波前误差。分散边缘传感器(DFS)方法用于初始粗活塞评估,这是本文的重点。点衍射干涉仪(PDI)用于精确的活塞和波前误差。为了通过PDI消除活塞的2 pi不确定性,使用了三个激光波长640nm,660nm和780nm进行测量。介绍了DHS测试设置,分析算法和结果。描述了相位板设计概念及其应用(即验证JWST在轨对准算法)。还简要介绍了JWST OSIM的布局以及OSIM中的相板功能。

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