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Open loop adaptive optics testbed on 2.16 meter telescope with liquid crystal corrector

机译:开环自适应光学系统在带有液晶校正器的2.16米望远镜上测试

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摘要

A novel liquid crystal wave front corrector (LCWFC) based open loop adaptive optics testbed for nonpolarized light was introduced in this paper. A polarizing beam splitter (PBS) was used behind the LCWFC to divide the reflected nonpolarized light into two orthogonal polarized lights with and without the modulation effect for high resolution imaging and aberration detection respectively. The alignment direction of LC molecules was parallel to the polarization direction of the light PBS reflected. This configuration was simple and easy for construction. It avoided the energy loss due to the use of polarizer for conventional LCWFC based closed loop adaptive optics system. Furthermore, it could be switched into closed loop configuration very easily, which was useful for quantitative system performance evaluation. The detailed construction and operation was reported in Section 2. In Section 3, this testbed was deployed at the coude focus of the 2.16 m telescope at the Xinglong Station of the Beijing Astronomical Observatory. The observation of star Arcturus was done. The Full Width Half Maximum (FWHM) resolution was improved from 2.12" to 0.64" successfully.
机译:介绍了一种新型的基于液晶波前校正器(LCWFC)的非偏振光开环自适应光学测试台。在LCWFC后面使用了一个偏振分束器(PBS),将反射的非偏振光分成两个正交偏振光,分别具有和没有调制效果,分别用于高分辨率成像和像差检测。 LC分子的取向方向平行于反射的PBS光的偏振方向。此配置简单易建。它避免了由于将偏振器用于传统的基于LCWFC的闭环自适应光学系统而导致的能量损失。此外,它可以很容易地切换到闭环配置,这对于定量系统性能评估很有用。详细的结构和操作在第2节中进行了报告。在第3节中,该试验台部署在北京天文台兴隆站2.16 m望远镜的核心位置。完成了对Arcturus恒星的观测。全宽半高(FWHM)分辨率从2.12“成功提高到0.64”。

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