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SILICON-GAP FABRY-PEROT FILTER FOR FAR-INFRARED WAVELENGTHS

机译:远红外波状硅间隙微滤器

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We developed a far-infrared Fabry-Perot filter constructed from a single silicon substrate. The limiting resolving power caused by beam divergence of a silicon-gap Fabry-Perot filter is approximately 10 times higher than that of a vacuum-gap Fabry-Perot filter because of the large index of refraction of silicon. The filter thus permits compact, high-throughput optical systems. Metal mesh patterns microlithographed on each face provide enhanced, wavelength-dependent face reflectivity. We tested the performance of filters with metal mesh patterns consisting of inductive crosses and capacitive squares. A Fabry-Perot filter developed for a rocketborne astrophysics experiment with a capacitive square metal mesh pattern achieves a resolving power of lambda/Delta lambda(FWHM) = 160 at lambda = 158 mu m, with a peak transmittance of 37% over an active aperture of 6.9 mm for an f/3.8 optical beam at 15 degrees incidence. The absorptivity of a 240-mu m thick silicon substrate patterned with capacitive metal mesh is A less than or similar to 1% per pass, including loss in both the silicon and the metal mesh. [References: 14]
机译:我们开发了由单个硅基板构成的远红外Fabry-Perot滤光片。硅间隙法布里-珀罗滤光片的光束发散所引起的极限分辨能力比真空间隙法布里-珀罗滤光片的光束发散所引起的极限分辨力大约高10倍,因为硅的折射率很大。因此,该滤光器允许使用紧凑的高通量光学系统。在每个面上进行微光刻的金属网格图案可提供增强的,取决于波长的面反射率。我们测试了由金属网状图案组成的滤波器的性能,该金属网状图案由感性十字和电容性正方形组成。为电容式方形金属网状图案进行火箭天体物理学实验而开发的Fabry-Perot滤波器在λ= 158μm时实现了λ/ Deltaλ(FWHM)= 160的分辨能力,在有效孔径上的峰值透射率为37% f / 3.8光束在15度入射时的6.9mm角。图案化为电容性金属网孔的240微米厚的硅基板的吸光度为A,小于或等于1%,包括硅和金属网孔中的损耗。 [参考:14]

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