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Fabrication of micro-lenses using excimer laser ablation by means of laser-generated grey-tone-masks

机译:通过激光产生的灰色口罩使用准分子激光烧蚀的微透镜的制造

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Micro-lenses, including Fresnel-Lenses, were fabricated by excimer laser ablation of polymers by means of lasergenerated grey-tone-masks. The smallest reproducible holes that could be fabricated by excimer laser ablation (193 nm. 1 J/cm~2) of chromium-on-quartz (thickness 50-100 nm) were around 3 μm, the pitch of which should be at least at the same value to ensure a reproducibility of hole-arrays. To achieve acceptable ablation times during the fabrication of the grey-tone-masks, on-the-fly ablation instead of step-and-repeat technique was used, operating the laser at a constant pulse repetition rate <30 Hz with a continuously moving quartz-substrate. In this way and using different encoding techniques it was possible to generate at least 11 different grey-tones. The available grey-tones were used to generate grey-tone-masks for ablation of Polymethylmethacrylate (PMMA) and Polycarbonate (PC). For that, fluences in the range of 0.07-0.14 J/cm~2 could be applied, corresponding to a value of 1.25 J/cm~2 on the workpiece without grey-tonemask and a value lying well below the damage threshold of the chromium mask. Refractive microlenses fabricated in this way did not show a good imaging quality, since 11 grey-tones is less than required to generate a continuous surface profile over the full diameter of the lens during ablation and the achievable aspect ratio is limited with the small fluences. However, flat diffractive micro-lenses of the Fresenel type with a quasi-continuously surface profile could be fabricated in a sufficient manner. This can be attributed to the fact that each segment of the Fresenel-lenses can be encoded by 11 grey-tones, leading to much smoother surface reliefs and to a sufficient imaging quality.
机译:通过促升性的灰色口罩通过促进剂激光烧蚀,通过促升式灰色口罩制造微透镜,包括菲涅耳透镜。可通过准分子激光消融(193nm.1J / cm〜2)的最小可再现孔的铬 - 石英(厚度50-100nm)为约3μm,其间距应至少在相同的值,以确保孔阵列的再现性。为了在制造灰色色调掩模期间实现可接受的消融时间,使用持续消融而不是步进和重复技术,在恒定的脉冲重复率<30 Hz处使用连续移动的石英来操作激光器-基质。以这种方式和使用不同的编码技术,可以生成至少11种不同的灰色音调。可用的灰色色调用于产生用于消融聚甲基丙烯酸甲酯(PMMA)和聚碳酸酯(PC)的灰色色调掩模。为此,可以施加0.07-0.14 j / cm〜2的流量,对应于工件上的值为1.25 j / cm〜2,而没有灰色铜马掩声,值远低于铬的损伤阈值面具。以这种方式制造的折射微透镜未显示出良好的成像质量,因为11个灰色音调小于在消融期间在透镜的全直径上产生连续表面轮廓并且可实现的纵横比限制为少量流量。然而,可以以足够的方式制造具有准连续表面型材的Freseenel型的平衍射微透镜。这可以归因于FReseNel透镜的每个段可以由11个灰色音调编码,导致更平滑的表面浮雕和足够的成像质量。

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