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Titania, silicon dioxide, and tantalum pentoxide waveguides and optical resonant filters prepared with radio-frequency magnetron sputtering and annealing

机译:用射频磁控溅射和退火制备的二氧化钛,二氧化硅和五氧化二钽波导和光学谐振滤波器

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摘要

Mixing dielectric materials in solid-thin-film deposition allows the engineering of thin films' optical constants to meet specific thin-film-device requirements, which can be significantly useful for optoelectronics devices and photonics technologies in general. In principle, by use of radio-frequency (rf) magnetron sputtering, it would be possible to mix any two, or more, materials at different molar ratios as long as the mixed materials are not chemically reactive in the mixture. This freedom in material mixing by use of magnetron sputtering has an advantage by providing a wide range of the material optical constants, which eventually enables the photonic-device designer to have the flexibility to achieve optimal device performance. We deposited three combinations from three different oxides by using rf magnetron sputtering and later investigated them for their optical constants. Each two-oxide mixture was done at different molar ratio levels. Moreover, postdeposition annealing was investigated and was shown to reduce the optical losses and to stabilize the film composition against environmental effects such as aging and humidity exposure. These investigations were supported by the fabricated planar waveguides and optical resonant filters. (C) 2005 Optical Society of America.
机译:在固态薄膜沉积中混合电介质材料可以设计出薄膜的光学常数,以满足特定的薄膜器件要求,这通常对光电器件和光子学技术非常有用。原则上,通过使用射频(rf)磁控管溅射,有可能以不同的摩尔比混合任意两种或更多种材料,只要混合后的材料在混合物中不发生化学反应即可。通过使用磁控溅射进行材料混合的这种自由度具有优势,因为它提供了广泛的材料光学常数,最终使光子器件设计者能够灵活地实现最佳器件性能。我们通过使用射频磁控溅射沉积了三种不同氧化物的三种组合,然后研究了它们的光学常数。每种二氧化物混合物以不同的摩尔比水平进行。此外,对沉积后退火进行了研究,结果表明可以减少光学损失并稳定膜组合物免受环境影响,例如老化和暴露在湿气中。这些研究得到了制造的平面波导和光学谐振滤波器的支持。 (C)2005年美国眼镜学会。

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