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Reflectivity and polarization dependence of polysilicon single-film broadband photonic crystal micro-mirrors

机译:多晶硅单膜宽带光子晶体微镜的反射率和偏振依赖性

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摘要

We report on the fabrication of 2-D photonic crystal (PC) micro-mirrors, and Finite Difference Time Domain (FDTD) simulations and measurements of their reflectance spectra and polarization dependence at normal incidence. The PC mirrors were fabricated in free-standing thin polysilicon membranes supported by silicon nitride films for stress compensation. Greater than 90% reflectivity is measured over a wavelength range of 35 nm from 1565 nm to 1600 nm with small polarization dependence. Our FDTD simulations show that fabrication errors on the order of tens of nanometers can strongly affect the reflection spectra. When the fabrication errors are kept below this level, FDTD simulations on perfectly periodic structures accurately predict the reflection spectra of the fabricated PC mirrors, despite their sensitivity to the fabrication errors.
机译:我们报告了二维光子晶体(PC)微镜的制造以及有限差分时域(FDTD)模拟以及在垂直入射时其反射光谱和偏振相关性的测量结果。 PC镜是在由氮化硅膜支撑的自支撑多晶硅薄膜上制成的,用于应力补偿。在1565 nm至1600 nm的35 nm波长范围内测得的反射率大于90%,偏振相关性较小。我们的FDTD模拟表明,数十纳米量级的制造误差会严重影响反射光谱。当制造误差保持在此水平以下时,完美周期结构上的FDTD仿真可以准确预测制造的PC镜的反射光谱,尽管它们对制造误差敏感。

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