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Three-dimensional integration of micro-optics in bulk silica glass by femtosecond laser direct writing: potential for industrial applications

机译:Femtosecond激光直接写作散装硅胶玻璃中微光学三维集成:工业应用潜力

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Femtosecond laser direct writing technique is a powerful tool to integrate micro-optics, compared to a conventional method of assembling bulk micro-optics. This technique has a great advantage to save the assembly time and to confirm effects of integration in short time. In this paper, we demonstrate the integration of a micro grating and a diffractive lens inside bulk silica glass by using the femtosecond laser direct writing technique. The grating can split an input beam into several numbers of beams and the diffractive lens can focus the beam at its focal plane. Therefore the integrated optics has a new function of the combination of the splitting and the focusing. Moreover we demonstrate the integration of two diffractive lenses inside silica glass and a pin hole on its surface. The integrated optics can realize collimating and focusing simultaneously. From the industrial point of view, we propose two potential applications: a high efficiency photo detector and a miniature spectrometer. Device concepts and the evaluation results are described.
机译:Femtosecond激光直接写入技术是一款强大的工具,与传统的组装散装微光学方法相比,这是一种集成微光学的工具。这种技术具有很大的优势,可以节省装配时间并在短时间内确认集成的影响。在本文中,我们通过使用飞秒激光直接写入技术来证明微光栅和衍射镜片内部的散硅玻璃内的集成。光栅可以将输入光束分成几个梁,并且衍射透镜可以将光束聚焦在其焦平面上。因此,集成光学器件具有分裂组合的新功能和聚焦。此外,我们证明了两种衍射镜片内部的二氧化硅玻璃和销孔的整合。集成光学器件可以同时实现准直和聚焦。从工业角度来看,我们提出了两个潜在的应用:高效照片检测器和微型光谱仪。描述了设备概念和评估结果。

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