首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optical design of compact unobscured ground-based diffractive telescope
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Optical design of compact unobscured ground-based diffractive telescope

机译:紧凑型视野开关地面衍射望远镜的光学设计

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摘要

To realize unobscured, compact structure and maintain loose tolerance, a novel method based on flat-field relay mirror for designing the ground-based diffractive telescope is proposed. Based on this mthod, we perform two different studies devised to design and reduce the manufacturing difficulty of compact unobscured ground-based diffractive telescope. Firstly, the formula of flatfield relay mirror structure based on aberration theory is deduced. Combining the Schupmann achromatic theory, a compact unobscured diffractive telescope with loose tolerance is designed. The designed focal length is 400 mm, F number is 5, the working waveband is 612.8-652.8 nm. After optimization by optical design software ZEMAX, the size of system is 720 mm x 435 mm, the total track distance is only 1/12 of transmissive diffractive telescope. The modulation transfer function (MTF) is greater than 0.73 at 50 lp/mm within 0.30 degrees x 0.07 degrees field of view (FOV), and the imaging quality is approached the diffraction limit. Secondly, to further reduce the difficulty, the fabricating parameters of diffractive optical elements (DOE) and the alignment tolerance of system are designed and fully analyzed. The analysis results show that the DOE can be fabricated by existing binary lithography, the designed system meet the requirement of alignment. The designed system provides a good solution for ground-based diffractive telescope.
机译:为了实现视野开阔,紧凑的结构和保持宽松的公差,提出了一种基于平场继电器镜的新方法,用于设计基于地基衍射望远镜。基于该媒介,我们执行了两种不同的研究,设计为设计,减少了紧凑的视野基于地面衍射望远镜的制造难度。首先,推导出基于像差理论的平底继电器镜结构的公式。设计了Schupmann消化源理论,设计了一种具有宽松耐受性的紧凑的视野开阔的衍射望远镜。设计的焦距为400mm,F编号为5,工作波带为612.8-652.8 nm。通过光学设计软件ZEMAX优化后,系统的尺寸为720mm×435mm,总轨道距离仅为透射衍射望远镜的1/12。调制传递函数(MTF)大于0.73,在0.30度×0.07度范围内的50磅/mm处大于0.73×0.07度视场(FOV),并且对衍射极限接近成像质量。其次,为了进一步减少困难,设计和完全分析了衍射光学元件(DOE)的制造参数和系统的对准公差。分析结果表明,DOE可以通过现有的二进制光刻制造,设计系统满足对准的要求。设计的系统为基于地面的衍射望远镜提供了良好的解决方案。

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