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Fabrication and characterization of diffraction gratings in ophthalmic polymers by using UV direct laser interference patterning

机译:紫外直接激光干涉图样在眼科聚合物中制备和表征衍射光栅

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The fabrication of diffractive elements in ophthalmic polymers to induce refractive index changes which may be applied for refractive correction is of great interest in the fields of Optics and Ophthalmology. In this work, polyhydroxyethyl-methacrylate and silicone hydrogel polymers used as soft contact lenses were structured with linear periodic patterns by means of Direct Laser Interference Patterning (DLIP). As the laser source, a Q-switched laser system emitting 10 ns pulses at a wavelength of 266 nm was used to generate the periodic modulation on the surface of the polymer materials. The experiments were carried out employing a two-beam interference setup, studying the features of the laser processed areas as a function of both the laser fluence and the interference period. The topography of the structured areas was investigated using optical confocal microscopy. Compositional and structural modifications on the materials were studied by means of micro-Raman spectroscopy, scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX). Finally, periodic patterns were characterized through diffractive techniques under illumination of a continuous-wave 632.8 nm He-Ne laser to determine the diffractive properties of the DLIP periodic patterns and the refractive index change induced by the laser processing.
机译:在光学和眼科领域中,在眼科聚合物中制造衍射元件以引起可用于折射校正的折射率变化是非常重要的。在这项工作中,通过直接激光干涉图案(DLIP),将用作软性隐形眼镜的聚甲基丙烯酸羟乙酯和有机硅水凝胶聚合物制成线性周期性图案。作为激光源,使用发射266 nm波长的10 ns脉冲的Q开关激光系统在聚合物材料的表面上产生周期性调制。实验采用两光束干涉装置进行,研究了激光加工区域的特征与激光通量和干涉周期的关系。使用光学共聚焦显微镜研究了结构化区域的形貌。通过显微拉曼光谱,扫描电子显微镜(SEM)和能量色散X射线光谱(EDX)研究了材料的成分和结构改性。最后,在连续波632.8 nm He-Ne激光的照射下,通过衍射技术对周期性图案进行表征,以确定DLIP周期性图案的衍射特性以及由激光加工引起的折射率变化。

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