不同制造参数下两种光子聚合结构制造分辨率的测量

T. Chung, Wan-Jou Li, Sheng-Yuan Chen, Chi-Hou Hoi
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引用次数: 2

摘要

研究了双光子聚合(TPP)技术在不同制造参数下的微结构制造分辨率。TPP制造系统使用的光源是低成本的532 nm Nd:YAG绿色激光器,使用的材料是商用树脂光度计3015。两种物镜,一种放大率为100倍(100倍),数值孔径(NA)为1.3,另一种放大率为50倍,NA0.8。制造分辨率,也称为体素大小,随着激光功率和曝光时间等制造参数的不同而变化。对不同制造参数下的TPP结构的测量结果表明,100x-NA1.3透镜产生的最小线宽可以降低到67纳米(nm),这对于低成本Nd:YAG激光器的TPP系统来说是非常好的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of manufacturing resolution for two photon polymerization structures with different manufacturing parameters
This paper studied manufacturing resolutions of micro structures made by two photon polymerization (TPP) technology with different manufacturing parameters. The light source used for the TPP manufacturing system was a low-cost 532 nm Nd:YAG green laser, and the material used was commercial resin Photomer 3015. Two objective lenses, one with magnification of 100 times (100x) and numerical aperture (NA) of 1.3 and the other with 50x and NA0.8 were used in TPP production. The manufacturing resolution, which is also named as voxel size, changed with different manufacturing parameters such as laser power and exposure time. The measurement results of TPP structures manufactured with different manufacturing parameters indicated that the minimum line width produced by the 100x-NA1.3 lens could be reduced down to 67 nanometer (nm), which was quite good for TPP systems with low-cost Nd:YAG laser.
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