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Optical performance evaluation and chromatic aberration correction of a focus tunable lens used for 3D microscopy

机译:用于3D显微镜的聚焦可调透镜的光学性能评估和色差校正

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Recently, the development of motion-free 3D microscopy utilizing focus tunable lenses (FTL) has been rapid. However, the downgrade of optical performance due to FTL and its gravity effect are rarely discussed in detail. Also, color dispersion is usually maintained purely depending on the FTL material without further correction. In this manuscript, we provide a quantitative evaluation of the impact of FTL on the optical performance of the microscope. The evaluation is based on both optical ray tracing simulations and lab experiments. In addition, we derive the first order conditions to correct axial color aberration of FTL through its entire power tuning range. Secondary spectrum correction is also possible and an apochromatic motion-free 3D microscope with 2 additional doublets is demonstrated. This study will serve a guidance in utilizing FTL as a motion-free element for 3D microscopy.
机译:近来,利用聚焦可调透镜(FTL)的无运动3D显微镜的发展迅速。但是,很少讨论由于FTL引起的光学性能下降及其引力效应。而且,通常仅根据FTL材料来保持色散,而无需进一步校正。在本文中,我们提供了FTL对显微镜光学性能影响的定量评估。评估基于光线追踪模拟和实验室实验。此外,我们推导了一阶条件,以在FTL的整个功率调整范围内校正FTL的轴向色差。还可以进行二次光谱校正,并展示了具有2个附加双合透镜的复消色差无运动3D显微镜。这项研究将为利用FTL作为3D显微镜的无运动元件提供指导。

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