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Fabrication of concave microlens arrays using controllable dielectrophoretic force in template holes

机译:利用可控介电泳力在模板孔中制备凹面微透镜阵列

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摘要

This Letter presents a method for fabricating concave microlens arrays of UV-curable polymer by using the dielectrophoresis (DEP) force. The DEP force, generated by a voltage between the patterned conductive template and substrate, acting on the polymer-air interface, can drive the dielectric liquid polymer into the template holes and change the shape of the polymer-air interface. The upper polymer surface of fabricated microlens is super smooth, which can reduce optical noise. The upper surface geometry is measured approximately as parabolic in general, which can lead to a negligible spherical aberration, compared to spherical surfaces.
机译:这封信提出了一种利用介电电泳(DEP)力制造紫外光固化聚合物的凹形微透镜阵列的方法。由图案化的导电模板和基板之间的电压产生的DEP力作用在聚合物-空气界面上,可以将电介质液体聚合物驱动到模板孔中,并改变聚合物-空气界面的形状。制成的微透镜的聚合物上表面非常光滑,可以减少光学噪声。总体上,上表面几何形状近似为抛物线形,与球形表面相比,可导致可忽略的球形像差。

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