Micromachined mid-infrared tunable Fabry-Perot filter

N. Neumann, K. Hiller, S. Kurth
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引用次数: 7

Abstract

This contribution deals with the design, fabrication and test of a micromachined first order Fabry-Perot (FP) filter that is intended for use in advanced infrared gas analysis. To achieve optimal interference conditions within an FP filter, the roughness and the curvature of its reflectors must be minimized, while the parallelism between reflectors is maintained. The approach here minimizes mirror curvature by using 300 /spl mu/m thick mirror carriers for the coplanar fixed and movable reflectors of the FP filter. Dielectric reflectance stacks consisting of deposited alternating layers of silicon dioxide (SiO/sub 2/) and polycrystalline silicon (Si) are used as the mirror reflectors and single and a multilayer antireflection coating is used at the silicon/air interface. The cavity spacing is electrostatically driven.
微机械中红外可调谐法布里-珀罗滤波器
该贡献涉及设计,制造和测试微机械一阶法布里-珀罗(FP)滤波器,用于先进的红外气体分析。为了达到最佳干涉条件,必须最小化反射镜的粗糙度和曲率,同时保持反射镜之间的平行度。这里的方法通过使用300 /spl mu/m厚的镜面载体用于FP滤波器的共面固定和可移动反射镜来最小化镜面曲率。由沉积的二氧化硅(SiO/sub 2/)和多晶硅(Si)交替层组成的介电反射堆栈用作镜面反射器,并在硅/空气界面处使用单层和多层增透涂层。空腔间距由静电驱动。
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