首页> 外文会议>Optical Engineering for Sensing and Nanotechnology (ICOSN '99) >Optically induced self-growing of fiber structure in a photopolymerizable resin
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Optically induced self-growing of fiber structure in a photopolymerizable resin

机译:光致聚合树脂中纤维结构的光诱导自生长

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Abstract: We present evidence of optically-induced growth of fiber patterns into a photopolymerizable resin. Optical growth of a single or multiple fibers is achieved by focusing a laser light into the photopolymerizable resin used. The fiber growth is due to an effect in which photopolymerization of the resin upon light irradiation produces an increase of the resin refractive index, the change of which, in turn, confines the light propagation into waveguide-type fiber structures. We have also observed that two optically grown independent fibers can merge to form a single fiber under specific conditions. We have studied the dependence of this optical growth of fiber structures phenomena on all the experimental parameters, including the numerical aperture (N.A.) of the lens used to focus the light, the light power, and the exposure time. !7
机译:摘要:我们提供了光诱导纤维图案向光聚合树脂中生长的证据。通过将激光聚焦到所用的可光聚合树脂中,可以实现单根或多根光纤的光学生长。纤维的生长归因于这样的效果,其中光照射时树脂的光致聚合产生树脂折射率的增加,其变化进而将光的传播限制在波导型纤维结构中。我们还观察到,在特定条件下,两条光学生长的独立纤维可以合并形成一条纤维。我们已经研究了纤维结构现象的这种光学生长对所有实验参数的依赖性,包括用于聚焦光的透镜的数值孔径(N.A.),光功率和曝光时间。 !7

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