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Three-dimensional recording by femtosecond pulses in polymer materials

机译:通过飞秒脉冲在聚合物材料中进行三维记录

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摘要

Fabrication and characteristics of two-dimensional (2D) and three-dimensional (3D) periodic structures, recorded inside the bulk of negative SU8 photoresist film by multiple-beam interference are reported. The recording was performed by ultrashort laser pulses of 150 fs duration with central wavelength of 800 nm, multiple beams were generated using a diffractive beam splitter. Intensity-dependent photomodification of the photoresist was initiated by multi-photon absorption. The development process removed the exposed regions of resist film, leaving free-standing 2D and 3D periodic dielectric structures. Detailed examination of the samples is presented, which reveals close resemblance between the features of the fabricated structures, and those of the light intensity distributions in the multiple-beam interference fields. The microfabrication method used is demonstrated to be suitable for obtaining of photonic crystal templates. Phase control of the constituent beams allowed to monitor and control the light interference pattern to be recorded. Possibility to record the diamond lattice using this method is examined and discussed.
机译:报告了二维(2D)和三维(3D)周期性结构的制作和特性,这些结构通过多光束干涉记录在负SU8光致抗蚀剂薄膜的内部。通过持续时间为150 fs的超短激光脉冲(中心波长为800 nm)执行记录,使用衍射分束器产生多束光束。通过多光子吸收来引发光致抗蚀剂的强度依赖性光改性。显影过程去除了抗蚀剂膜的暴露区域,留下了独立的2D和3D周期性电介质结构。提出了对样品的详细检查,揭示了所制造结构的特征与多光束干涉场中的光强度分布之间的相似性。已证明所使用的微细加工方法适用于获得光子晶体模板。组成光束的相位控制允许监视和控制要记录的光干涉图案。研究并讨论了使用这种方法记录钻石晶格的可能性。

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