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Semiellipsoid microlens fabrication method using UV proximity printing

机译:使用UV接近印刷的半椭圆微透镜制造方法

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摘要

We present a new semiellipsoid microlens fabrication method that controls the printing gap in the UV lithography process without thermal reflow. The UV proximity printing method can precisely control the curvature radius ratio of the semiellipsoid microlens in the fabrication process. The proposed fabrication method facilitates mass production to achieve a high-yield and high-coupling semiellipsoid microlens that is suitable to be used in commercial fiber transmission systems. A semiellipsoid microlens can be tipped on a single-mode fiber end to improve power coupling efficiency from laser diodes. The semi-ellipsoid microlens allows increasing the fiber spot size and numerical aperture. It is very important to control the geometric parameters in the assembly procedure to increase the optical coupling efficiency between the laser diode and single-mode fiber. Wide misalignment tolerance, low loss, and low manufacturing cost could be achieved by the proposed fabrication method. The theoretical model is first developed to predict the optical coupling efficiency for various microstructure geometries of semiellipsoid microlens and assembly parameters in this study. Then, the Taguchi method is applied to obtain the optimal geometric parameters setting. The results show that optical coupling efficiency could be significantly improved by using the optimal geometric parameters setting.
机译:我们提出了一种新的半椭球微透镜制造方法,该方法可控制UV光刻工艺中的印刷间隙而无热回流。 UV接近印刷法可以在制造过程中精确控制半椭圆形微透镜的曲率半径比。所提出的制造方法促进了批量生产,以实现适于在商业光纤传输系统中使用的高产率和高耦合的半椭圆体微透镜。可以将半椭圆微透镜倾斜到单模光纤端,以提高激光二极管的功率耦合效率。半椭圆微透镜允许增加光纤的光斑尺寸和数值孔径。在组装过程中控制几何参数以提高激光二极管和单模光纤之间的光耦合效率非常重要。通过所提出的制造方法可以实现宽的未对准公差,低损耗和低制造成本。首先建立理论模型,以预测半椭圆形微透镜的各种微结构几何形状和组装参数的光耦合效率。然后,使用Taguchi方法获得最佳几何参数设置。结果表明,使用最佳几何参数设置可以显着提高光耦合效率。

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