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Spectroscopic study on amorphous tantalum oxynitride thin films prepared by reactive gas-timing RF magnetron sputtering

机译:反应气定时射频磁控溅射制备非晶态氮氧化钽薄膜的光谱研究

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The amorphous tantalum oxynitride (TaOxNy) thin films were prepared on silicon (100) substrates by magnetron sputtering system with different techniques of conventional reactive sputtering and reactive gas-timing (RGT). The films were studied via spectroscopic ellipsometry (SE) measured in the range of 0.75-5.0 eV with 0.025 eV interval at 70 degrees incident angle, and the optical model based on Tauc-Lorentz function was constructed to extract the properties of the films. The SE results indicated that all prepared films were grown homogeneously and show different optical properties upon their deposition conditions and techniques. The optical properties of film prepared by conventional reactive sputtering were close to the tantalum oxide film (TaO). The refractive index and optical band gap (E-g) of RGT samples changed with the oxygen timing and correlated with the change of oxygen and nitrogen concentration of the films. In addition, the morphologies, crystallinities, atomic concentrations and distributions of nitrogen atoms in the films analyzed by field-emission scanning electron microscopy, glazing-incident X-ray diffraction, X-ray photoelectron spectroscopy and X-ray absorption spectroscopy are also discussed.
机译:采用常规反应溅射和反应气体定时(RGT)的不同技术,通过磁控溅射系统在硅(100)衬底上制备了非晶态氮氧化钽(TaOxNy)薄膜。通过在70°入射角下在0.75-5.0 eV范围内,以0.025 eV间隔测量的椭圆偏振光谱法(SE)研究薄膜,并构建基于Tauc-Lorentz函数的光学模型以提取薄膜的性能。 SE结果表明,所有制备的膜均生长均匀,并且在其沉积条件和技术上显示出不同的光学性质。通过常规反应溅射制备的膜的光学性质接近氧化钽膜(TaO)。 RGT样品的折射率和光学带隙(E-g)随氧气时间的变化而变化,并且与薄膜中氧气和氮气浓度的变化相关。此外,还讨论了通过场发射扫描电子显微镜,玻璃入射X射线衍射,X射线光电子能谱和X射线吸收能谱分析的薄膜中氮原子的形貌,结晶度,原子浓度和分布。

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