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JWST testbed telescope: a functionally accurate scaled version of the flight optical telescope element used to develop the flight wavefront sensing and control algorithm

机译:JWST测试望远镜:用于开发飞行波前感测和控制算法的飞行光学望远镜元件的功能准确的缩放版本

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The Northrop-Grumman/Ball/Kodak team is building the JWST observatory that will be launched in 2011. To develop the flight wavefront sensing and control (WFS&C) algorithms and software, Ball is designing and building a 1 meter diameter, functionally accurate version of the JWST optical telescope element (OTE). This testbed telescope (TBT) will incorporate the same optical element control capability as the flight OTE. The secondary mirror will be controlled by a 6 degree of freedom (dof) hexapod and each of the 18 segmented primary mirror assemblies will have 6 dof hexapod control as well as radius of curvature adjustment capability. In addition to the highly adjustable primary and secondary mirrors, the TBT will include a rigid tertiary mirror, 2 fold mirrors (to direct light into the TBT) and a very stable supporting structure. The total telescope system configured residual wavefront error will be better than 175 nm RMS double pass. The primary and secondary mirror hexapod assemblies enable 5 nm piston resolution, 0.0014 arcsec tilt resolution, 100 nm translation resolution, and 0.04497 arcsec clocking resolution. The supporting structure (specifically the secondary mirror support structure) is designed to ensure that the primary mirror segments will not change their despace position relative to the secondary mirror (spaced > 1 meter apart) by greater than 500 nm within a one hour period of ambient clean room operation.
机译:The Northrop-Grumman / Ball / Kodak团队正在建立JWST天文台,将于2011年推出。为开发飞行波前感应和控制(WFS&C)算法和软件,球正在设计和建造1米直径,功能准确的版本JWST光学望远镜元件(OTE)。该试验台望远镜(TBT)将包括与飞行素材相同的光学元件控制能力。二次镜将由6度自由度(DOF)六角摄影,并且18个分段初级镜子组件中的每一个将具有6个DOF六足控制,以及曲率调节能力的半径。除了高度可调节的初级和次镜外,TBT还将包括刚性三级镜子,2个折叠镜(将光线引入TBT)和非常稳定的支撑结构。望远镜系统配置的剩余波前误差将优于175 nm rms双通。初级和次级镜子六角形组件使5 nm活塞分辨率,0.0014个弧度倾斜分辨率,100nm的翻译分辨率和0.04497 arcsec时钟分辨率。支撑结构(特别是次镜支撑结构)设计成确保主镜区段不会在周围的一个小时内通过大于500nm的二次镜子(间隔开> 1米分开)来改变它们的耐动位置洁净室运行。

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