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Precise autofocus method employing normalized fluorescence image size in a two-photon polymerization nanofabrication system

机译:在双光子聚合纳米加工系统中采用归一化荧光图像尺寸的精确自动聚焦方法

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The autofocus method has been investigated to improve the precise positioning of a substrate surface at the center of the laser focal spot in two-photon polymerization (TPP) nanofabrication. For this purpose, we developed a novel autofocus method using normalized image size, which was calculated with the second momentum radius (SMR) of two-photon induced fluorescence (TPIF). The SMR of TPIF was theoretically analyzed and experimentally compared with the average intensity of TPIF for various input laser powers. The results show that the proposed method enhanced the precision and robustness of autofocus in TPP. Specifically, the experimental creation of ascending voxel arrays demonstrated both the method's immunity to input laser power change, and a high precision of +/- 0.045 mu m. To test the practical feasibility of the proposed autofocus method, 300 mu m x 260 mu m single-layer honey-comb structures were successfully fabricated with precompensation and dynamic compensation using the proposed autofocus method. (C) 2015 Optical Society of America
机译:已经研究了自动聚焦方法,以在双光子聚合(TPP)纳米加工中改善衬底表面在激光焦点中心的精确定位。为此,我们使用归一化图像尺寸开发了一种新颖的自动聚焦方法,该方法是利用双光子诱导荧光(TPIF)的第二动量半径(SMR)计算得出的。对TPIF的SMR进行了理论分析,并与各种输入激光功率的TPIF的平均强度进行了实验比较。结果表明,该方法提高了TPP自动对焦的精度和鲁棒性。具体来说,上升体素阵列的实验创建证明了该方法对输入激光功率变化的免疫力以及+/- 0.045μm的高精度。为了测试所提出的自动聚焦方法的实际可行性,使用所提出的自动聚焦方法成功地通过预补偿和动态补偿成功地制造了300μmx260μm的单层蜂窝结构。 (C)2015年美国眼镜学会

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