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Optimal Power Distribution for Minimizing Pupil Walk in a 7.5X Afocal Zoom Lens

机译:最佳功率分配,以最小化7.5倍无焦点变焦镜头中的瞳距

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An extensive design study was conducted to find the best optimal power distribution and stop location for a 7.5x afocal zoom lens that controls the pupil walk and pupil location through zoom. This afocal zoom lens is one of the three components in a VIS-SWIR high-resolution microscope for inspection of photonic chips. The microscope consists of an afocal zoom, a nine-element objective and a tube lens and has diffraction limited performance with zero vignetting. In this case, the required change in object (sample) size and resolution is achieved by the magnification change of the afocal component. This creates strict requirements for both the entrance and exit pupil locations of the afocal zoom to couple the two sides successfully. The first phase of the design study looked at conventional four group zoom lenses with positive groups in the front and back and the stop at a fixed location outside the lens but resulted in significant pupil walk. The second phase of the design study focused on several promising unconventional four-group power distribution designs with moving stops that minimized pupil walk and had an acceptable pupil location (as determined by the objective and tube lens).
机译:进行了广泛的设计研究,以找到适用于7.5倍自动变焦镜头的最佳最佳功率分布和光阑位置,该变焦镜头通过变焦控制瞳孔的走动和瞳孔的位置。这款无焦点变焦镜头是VIS-SWIR高分辨率显微镜中用于检查光子芯片的三个组件之一。该显微镜由一个无焦点变焦镜头,一个九元素物镜和一个管状镜组成,并具有有限的衍射性能和零渐晕。在这种情况下,所需的物体(样品)大小和分辨率的变化是通过无焦点组件的放大倍数实现的。这对焦点变焦的出瞳位置和出瞳位置都提出了严格的要求,以成功地将两侧耦合。设计研究的第一阶段研究的是传统的四组变焦镜头,其正面和背面均具有正向组,并且光阑位于镜头外部的固定位置,但导致明显的瞳孔走动。设计研究的第二阶段着眼于几种有前途的非常规四组配电设计,其移动挡块可最大程度地减少瞳孔的走动并具有可接受的瞳孔位置(由物镜和镜筒确定)。

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