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Alignment-mechanism design for solid tunable lenses based on Alvarez principle

机译:基于Alvarez原理的固体可调镜头对准机构设计

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The performance of Alvarez lenses is sensitive to the misalignment of lens elements. To improve the alignment accuracy and hence the lens performance, a feasible active alignment mechanism is proposed in this paper. Four micro lenses are created on the corners of the lens elements, forming two afocal lens pairs when the two lens elements are stacked. By monitoring the position of the laser spot coming from the afocal lens pair, the relative position of the two lens elements can be controlled precisely. The results show that an alignment accuracy less than 10 μm is achievable. Such an alignment mechanism would be useful in future solid tunable lens designs.
机译:Alvarez镜片的性能对透镜元件的未对准敏感。为了提高对准精度并因此进行镜头性能,本文提出了可行的主动对准机构。在透镜元件的拐角上产生四个微透镜,当堆叠两个透镜元件时形成两个外部镜头对。通过监视来自外焦镜对的激光光斑的位置,可以精确地控制两个透镜元件的相对位置。结果表明,可实现小于10μm的对准精度。这种对准机构在未来的固体可调镜头设计中是有用的。

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