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Hyperboloid solgel microlens array fabricated by soft-lithography for optical coupling

机译:用于光学耦合的软光刻制造的双曲面溶胶微滤网

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It is known that the best way to correct spherical aberrations is the use of aspheric microlenses in optical systems, where a single aspheric microlens can be employed to replace a compound of spherical microlenses in a compact design. However the fabrication of aspheric microlenses is often complex because expensive high-energy beam-sensitive (HEBS) gray scale mask is needed in the fabrication process. In this paper, we reported a cost-effective fabrication method, with a combination of the sample-inverted reflow technique and the soft lithography replication method, to fabricate hyperboloid refractive microlens arrays (MLAs) in the inorganic-organic hybrid SiO_2-ZrO_2 sol-gel material. The fabrication procedures involved two basic steps. Firstly, a master of hyperboloid MLA was made in photoresist by the sample-inverted reflow technique. Secondly, a negative mold of the master was built by casting polydimethylsiloxane (PDMS) to a silicone elastomer against the master, and then the profile was impressed onto the sol-gel glass. As a result, the fabricated sol-gel MLAs have been obtained with excellent smooth profiles, having negligible discrepancies from the profiles of the ideal hyperboloid MLAs. The root-mean-square roughness values (R_q) of the surface of MLA were measured as 1.2 nm in the central areas and 2.1 nm in the outskirts of the lens. In an application of coupling a laser diode (LD) to a single-mode fibre (SMF), we proposed a two-MLA coupling scheme where two revolved-hyperboloid MLAs were back to back introduced between the LD and the SMF. In this configuration, the coupling efficiency has achieved 83.4% (-0.79 dB).
机译:众所周知,校正球面像差的最佳方法是在光学系统中使用非球面微透镜,其中可以采用单个非球面微透镜在紧凑的设计中更换球形微透镜的化合物​​。然而,非球面微透镜的制造通常是复杂的,因为在制造过程中需要昂贵的高能光束敏感(HEBS)灰度掩模。在本文中,我们报告了一种经济高效的制造方法,采用样品反转回流技术和软光刻复制方法的组合,在无机 - 有机杂交SiO_2-ZrO_2溶胶中制造双曲面折射微透镜阵列(MLAS) - 凝胶材料。制造程序涉及两个基本步骤。首先,通过样品倒回物回流技术在光致抗蚀剂中进行双曲面MLA的主体。其次,通过将聚二甲基硅氧烷(PDMS)铸造给硅氧烷弹性体,抵抗母体,然后将曲线施加到溶胶 - 凝胶玻璃上,构建母料的阴性模具。结果,已经获得了制造的溶胶MLA,其具有优异的光滑型材,具有可忽略的差异来自理想的双曲面MLA的曲线。 MLA表面的根平均方形粗糙度值(R_Q)在中央区域中测量为1.2nm,在镜片的郊区中的2.1nm。在将激光二极管(LD)耦合到单模光纤(SMF)的应用中,我们提出了一种双MLA耦合​​方案,其中两个旋转双曲线MLA返回到LD和SMF之间引入。在这种配置中,耦合效率已经实现了83.4%(-0.79dB)。

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