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Micro-fabrication technology by femtosecond laser direct scanning using two-photon photo-polymerization

机译:飞秒激光直接扫描双光子光聚合的微细加工技术

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摘要

Two-photon absorption (TPA) is confined at the focus under tight-focusing conditions, which provides a novel concept for micro-fabrication using two-photon photo-polymerization in resin. The development of three-dimensional micro-fabrication by femtosecond laser was introduced at first, then the merits of femtosecond two-photon photo-polymerization was expatiated. Femtosecond laser direct scanning three-dimensional (3D) micro-fabrication system was set up and corresponding controlling software was developed. We demonstrated a fabrication of three-dimensional microstructures using photo-polymerization of resin by two-photon absorption. The precision of micro-machining and the spatial resolution reached 1um because of TPA. The dependence of fabricated line width to the micro-fabrication speed was investigated. Benzene ring, CHINA and layer-by-layer of log structures were fabricated in this 3D- micro-fabrication system as examples.
机译:双光子吸收(TPA)被限制在紧聚焦条件下的焦点处,这为在树脂中使用双光子光聚合的微细加工提供了一个新颖的概念。首先介绍了飞秒激光在三维微加工领域的发展,然后阐述了飞秒两光子光聚合的优点。建立了飞秒激光直接扫描三维(3D)微细加工系统,并开发了相应的控制软件。我们展示了通过利用双光子吸收对树脂进行光聚合而制造的三维微观结构。由于TPA的原因,微加工的精度和空间分辨率达到了1um。研究了线宽对微细加工速度的依赖性。例如,在此3D微制造系统中制造了苯环,CHINA和逐层的日志结构。

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