首页> 外文会议>Conference on Optical Design and Testing; 20071112-15; Beijing(CN) >Preliminary analysis and experiment of thermal influence on a large aperture mirror
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Preliminary analysis and experiment of thermal influence on a large aperture mirror

机译:大口径反射镜热影响的初步分析与实验

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Thermal distortion of the optical elements can greatly reduce the high resolution of the space-borne camera. The general thermal effect on mirror is analyzed and the optical aberration of the optical surface resulting from 3 kinds of thermal gradient is discussed. The thermal distortion simulating experiment of a large aperture flat mirror is designed and the optical aberration is tested on 18" ZYGO with the different axial thermal disturb. The testing results conclude that the small thermal gradient can greatly affect the wave-front, the aberration of this large aperture flat mirror can be used to simulate the thermal distortion on space, and MTF is also reduced greatly when this large aperture flat mirror is used in the real space-borne camera under the same thermal environment. In order to correct the thermal distortion and keep the high resolution, the 37-units adaptive optics correction close loop experiment is designed and installed in the above camera. The correction results show that MTF of the testing camera will not reduced greatly under the large thermal distortion. So employing adaptive optics on a high resolution space camera is the necessary and the valid method to correct the thermal distortion.
机译:光学元件的热变形会大大降低星载相机的高分辨率。分析了一般的热效应对反射镜的影响,并讨论了由三种热梯度引起的光学表面的光学像差。设计了大孔径平面反射镜的热畸变模拟实验,并在不同轴向热干扰的18英寸ZYGO上进行了光学像差测试。测试结果表明,小的热梯度可以极大地影响波前,像差。该大口径平面镜可用于模拟空间热变形,并且在相同的热环境下,将这种大口径平面镜用于实际星载相机时,MTF也会大大降低。为了保持高分辨率,在上述摄像机中设计并安装了37个单元的自适应光学校正闭环实验,校正结果表明,在较大的热变形下,测试摄像机的MTF不会大大降低。高分辨率空间相机是纠正热变形的必要和有效方法。

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