Deeply-etched micromirror with vertical slit and metallic coating enabling transmission-type optical MEMS filters

SPIE OPTO Pub Date : 2016-03-15 DOI:10.1117/12.2211323
Muhammad A. Othman, Y. Sabry, Mohamed Sadek, I. Nassar, D. Khalil
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引用次数: 5

Abstract

In this work we report a novel optical MEMS deeply-etched mirror with metallic coating and vertical slot, where the later allows reflection and transmission by the micromirror. The micromirror as well as fiber grooves are fabricated using deep reactive ion etching technology, where the optical axis is in-plane and the components are self-aligned. The etching depth is 150 μm chosen to improve the micromirror optical throughput. The vertical optical structure is Al metal coated using the shadow mask technique. A fiber-coupled Fabry-Pérot filter is successfully realized using the fabricated structure. Experimental measurements were obtained based on a dielectric-coated optical fiber inserted into a fiber groove facing the slotted micromirror. A versatile performance in terms of the free spectral range and 3-dB bandwidth is achieved.
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具有垂直狭缝和金属涂层的深蚀刻微镜,可实现传输型光学MEMS滤波器
在这项工作中,我们报告了一种新型的光学MEMS深蚀刻反射镜,金属涂层和垂直槽,后者允许微镜反射和传输。微镜和光纤槽采用深度反应离子蚀刻技术制造,其中光轴是平面内的,组件是自对准的。为了提高微镜的光学吞吐量,选择了150 μm的刻蚀深度。垂直光学结构是采用阴影掩膜技术涂覆的铝金属。利用该结构成功地实现了光纤耦合法布里-普氏滤波器。将一根介质涂层光纤插入面对开槽微镜的光纤槽中,得到了实验测量结果。在自由频谱范围和3db带宽方面实现了通用性能。
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