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Fabrication of Hexagonal Microlens Arrays on Single-Crystal Silicon Using the Tool-Servo Driven Segment Turning Method

机译:使用工具伺服驱动段车削法在单晶硅上制造六角微透镜阵列

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摘要

Single-crystal silicon microlens arrays are increasingly required in advanced infrared optics. In this study, the authors attempted to fabricate hexagonal microlens arrays, which offer high optical efficiency, on a single-crystal silicon wafer using diamond turning. A tool-servo driven segment turning method was proposed to reduce the dynamic error of the machine tool induced by lenslet edges during lens array cutting. From the results of both cutting experiments and theoretical analysis of the machine tool dynamic error, it was demonstrated that the segment turning method reduced significantly the dynamic errors and led to high form accuracy. As a result, sharp edges among the lenslets were generated precisely and microlens arrays with a form error of ~300 nm peak-to-valley and surface roughness of ~5 nmSa, which meets the requirements of infrared optical systems, were successfully fabricated. The subsurface damage, such as the amorphization of silicon, caused by machining was also reduced.
机译:在高级红外光学系统中,单晶硅微透镜阵列的需求日益增长。在这项研究中,作者试图通过金刚石车削在单晶硅晶片上制造具有高光学效率的六角形微透镜阵列。提出了一种工具伺服驱动的分段车削方法,以减少在透镜阵列切割过程中由小透镜边缘引起的机床动态误差。通过切削实验的结果和机床动态误差的理论分析,证明了分段车削方法显着降低了动态误差并提高了成型精度。结果,精确地产生了小透镜之间的尖锐边缘,并且成功地制造了微透镜阵列,其微峰阵列的峰-谷形差约为300 nm,表面粗糙度约为5 nmSa,符合红外光学系统的要求。也减少了由机加工引起的亚表面损伤,例如硅的非晶化。

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