光学
曲率
生物光子学
材料科学
数值孔径
焦距
分辨率(逻辑)
镜头(地质)
视野
光圈(计算机存储器)
图像分辨率
景深
物理
激光器
计算机科学
数学
波长
几何学
人工智能
声学
作者
Sebastian Stark,Herbert Groß,Katharina Reglinski,Bernhard Messerschmidt,Christian Eggeling
摘要
In this paper the development of a miniaturized endoscopic objective lens for various biophotonics applications is presented. While limiting the mechanical dimensions to 2.2 mm diameter and 13 mm total length, a numerical aperture of 0.7 in water and a field-of-view (FOV) diameter of 282 µm are achieved. To enable multimodal usage a wavelength range of 488 nm to 632 nm was considered. The performed broad design study aimed for field curvature reduction when maintaining the sub 1 µm resolution over a large FOV. Moreover, the usage of GRadient-INdex (GRIN) lenses was investigated. The resolution, field curvature improvement and chromatic performance of the novel device were validated by means of a confocal laser-scanning-microscope.
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