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首页> 外文期刊>Applied optics >Reduction of material mass of optical component in cryogenic camera by using high-order Fresnel lens on a thin germanium substrate
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Reduction of material mass of optical component in cryogenic camera by using high-order Fresnel lens on a thin germanium substrate

机译:通过在薄锗基板上使用高阶菲涅耳透镜来降低低温照相机中光学部件的材料质量

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We designed a compact infrared cryogenic camera using only one lens mounted inside the detector area. In the field of cooled infrared imaging systems, the maximal detector area is determined by the dewar. It is generally a sealed and cooled environment dedicated to the infrared quantum detector. By integrating an optical function inside it, we improve the compactness of the camera as well as its performances. The originality of our approach is to use a thin integrated optics which is a high quality Fresnel lens on a thin germanium substrate. The aim is to reduce the additional mass of the optical part integrated inside the dewar to obtain almost the same cool down time as a conventional dewar with no imaging function. A prototype has been made and its characterization has been carried out. (C) 2015 Optical Society of America
机译:我们设计了一种紧凑型红外低温相机,仅使用一个安装在检测器区域内的镜头。在冷却的红外成像系统领域,最大探测器面积取决于杜瓦瓶。通常是专用于红外量子探测器的密封和冷却环境。通过在其中集成光学功能,我们提高了相机的紧凑性及其性能。我们方法的独创性是使用薄集成光学元件,这是在薄锗衬底上的高质量菲涅耳透镜。目的是减少集成在杜瓦瓶中的光学部件的额外质量,以获得与没有成像功能的传统杜瓦瓶几乎相同的冷却时间。已经制成了原型并进行了表征。 (C)2015年美国眼镜学会

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