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Support planar and tapered quasi-planar germanium waveguides for infrared evanescent-wave sensing

机译:支持平面和锥形准平面锗波导,用于红外e逝波传感

摘要

Miniature planar IR waveguides of thickness 30-50 &mgr;m, consisting of 12-mm long, 2-mm wide strips of Ge supported on ZnS substrates and tapered quasi-tapered waveguides, tapered from a thickness of 1 mm at the ends to a minimum of 1-100 &mgr;m at the center, are disclosed. The surface sensitivity is increased as a function of incidence or bevel angle. The tapered waveguide improves the efficiency of the optical coupling both into the waveguide from an FTIR spectrometer, and out of the waveguide onto a small-area IR detector. The tapering makes it possible to dispense with using an IR microscope couple light through the waveguide, enabling efficient coupling with a detector directly coupled to an immersion lens. This optical arrangement makes such thin supported waveguides more useful as sensors, because they can be made quite long (e.g. 50 mm) and mounted horizontally. Furthermore, even with a 20-&mgr;m×1-mm cross section, sufficient throughput is obtained to give signal/noise ratios in excess of 1000 over most of the 1000-5000 cm−1 range, with just 2 min of scanning at 8 cm−1 solution.
机译:厚度为30-50μm的微型平面IR波导,由支撑在ZnS衬底上的12毫米长,2毫米宽的Ge条和锥形准锥形波导组成,其末端的厚度为1 mm公开了在中心处的最小1-100μm。表面灵敏度随入射角或斜角的增加而增加。锥形波导提高了从FTIR光谱仪进入波导以及从波导进入小面积IR检测器的光耦合效率。逐渐变细使得可以免除使用IR显微镜通过波导耦合光的可能性,从而可以与直接耦合到浸没透镜的检测器有效耦合。这种光学装置使这种薄支撑的波导更能用作传感器,因为它们可以做得很长(例如50mm)并水平安装。此外,即使具有20-m×1-mm的横截面,也可以获得足够的通过量,从而在1000-5000 cm -1的大部分范围内给出超过1000的信噪比。 ,在8 cm -1 溶液中仅扫描2分钟。

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