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A novel method for fabrication of self-aligned double microlens arrays

机译:一种自对准双微透镜阵列的新型制造方法

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Based on the excimer laser microdrilling and the spin coating scheme, a new fabrication method of polymeric, double microlens arrays on a thin plastic pedestal sheet is proposed in this study. On each through hole on the pedestal sheet, a double microlens pair, consisting of two microlenses with different parabolic surfaces, is sited. The two microlenses of each pair are located respectively on both ends of the through hole and arranged surface to surface and automatically share a common lens principal axis. The fabricated microlens arrays are made of PMMA that are formed on a PMMA pedestal sheet with thickness of 100 μm. The diameter and height for the microlens on one layer are of 150 μm and 28 μm, respectively, and they are correspondingly of 130 μm and 24 μm on the other layer. Experimental results demonstrate that the double microlens arrays have a better focusing property than the single-layer mircolens array. Simulation results indicate that, simply by changing the thickness of the pedestal sheet, the present fabricated double microlens arrays can serve the purposes for light collimating and diffusing. Due to its inherent simplicity in fabrication, the present method has high flexibility for making double microlens arrays with different lens configurations and various lens refractive indices. The facts that precise alignment and all processing steps are performed in ambient and at low temperature render the proposed approach a potential low-cost method for fabrication of double microlens arrays.
机译:基于准分子激光微钻和旋涂方案,本研究提出了一种在薄塑料基座片上制备聚合物双微透镜阵列的新方法。在基座板上的每个通孔上,放置了一个双微透镜对,该双微透镜对由两个具有不同抛物面的微透镜组成。每对中的两个微透镜分别位于通孔的两端并面对面布置,并自动共享公共的透镜主轴。制成的微透镜阵列由PMMA制成,该PMMA形成在PMMA基座板上,厚度为100μm。一层上的微透镜的直径和高度分别为150μm和28μm,而另一层上的微透镜的直径和高度分别为130μm和24μm。实验结果表明,双微透镜阵列比单层微透镜阵列具有更好的聚焦特性。仿真结果表明,仅通过改变基座片的厚度,本发明制造的双微透镜阵列就可以达到光准直和漫射的目的。由于其固有的制造简单性,本发明的方法具有高度的灵活性,以制造具有不同透镜配置和各种透镜折射率的双微透镜阵列。精确对准和所有处理步骤均在环境和低温下进行的事实使所提出的方法成为制造双微透镜阵列的潜在低成本方法。

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