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Mid-infrared optical properties of thin films of aluminum oxide, titanium dioxide, silicon dioxide, aluminum nitride, and silicon nitride

机译:氧化铝,二氧化钛,二氧化硅,氮化铝和氮化硅薄膜的中红外光学性质

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摘要

The complex refractive index components, n and k, have been studied for thin films of several common dielectric materials with a low to medium refractive index as functions of wavelength and stoichiometry for mid-infrared (MIR) wavelengths within the range 1.54-14.29 μm (700-6500 cm~(-1)). The materials silicon oxide, silicon nitride, aluminum oxide, aluminum nitride, and titanium oxide are prepared using room temperature reactive sputter deposition and are characterized using MIR variable angle spectroscopic ellipsometry. The investigation shows how sensitive the refractive index functions are to the O_2 and N_2 flow rates, and for which growth conditions the materials deposit homogeneously. It also allows conclusions to be drawn on the degree of amorphousness and roughness. To facilitate comparison of the materials deposited in this work with others, the index of refraction was also determined and provided for the near-IR and visible ranges of the spectrum. The results presented here should serve as a useful information base for designing optical coatings for the MIR part of the electromagnetic spectrum. The results are parameterized to allow them to be easily used for coating design.
机译:已经研究了几种常见的介电材料薄膜的复折射率分量n和k,其中低至中折射率随波长和化学计量比而变化,适用于1.54-14.29μm范围内的中红外(MIR)波长( 700-6500 cm〜(-1))。氧化硅,氮化硅,氧化铝,氮化铝和氧化钛是使用室温反应溅射沉积制备的,并使用MIR可变角光谱椭圆偏振法进行了表征。研究表明,折射率函数对O_2和N_2流速有多敏感,并且材料在哪种生长条件下均匀沉积。它还可以得出关于非晶性和粗糙度的结论。为便于比较此工作中沉积的材料与其他材料,还确定了折射率并将其提供给光谱的近红外和可见光范围。此处介绍的结果应为设计电磁光谱的MIR部分的光学涂层提供有用的信息基础。对结果进行参数化,以使其易于用于涂层设计。

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