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Giant dispersive and absorptive optical nonlinearities in TiO2 thin films

机译:TiO2薄膜中的巨型分散和吸收光学非线性

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We report the experimental observation of giant dispersive and absorptive optical nonlinearities in direct current magnetron sputtered as-grown and annealed TiO2 thin films. The TiO2 film was deposited in a mixture of argon and oxygen. The as-grown film and the film annealed below 250 degrees C demonstrated amorphous behavior having particle size variation in the range of 15-20 nm, while the films annealed above temperature > 300 degrees C exhibited crystalline structure with larger particle size (50-80 nm). The enhancement in optical nonlinearity in amorphous films can be attributed to small particle sizes, while in crystalline thin films, the enhancement in optical nonlinearity is attributed to phonon-assisted resonant transitions. The films are characterized by the x-ray diffraction technique, atomic force microscopy, UV-visible spectroscopy, and Raman spectroscopy for their structural properties, morphology, bandgap, and presence of phonon modes, respectively. The intensity-dependent nonlinear optical properties of the films are analyzed by using the Z-scan technique. (C) 2020 Optical Society of America
机译:我们报道了直流磁控溅射的巨大分散和吸收光学非线性的实验观察,其溅射的溅射和退火的TiO2薄膜。将TiO 2膜沉积在氩气和氧的混合物中。低于250℃的薄膜和膜退火,证明了在15-20nm的范围内具有粒度变化的无定形行为,而在高于温度> 300℃的薄膜上呈现出具有较大粒度的结晶结构(50-80 nm)。无定形膜中的光学非线性的增强可归因于小的粒度,而在晶体薄膜中,光学非线性的增强归因于声子辅助谐振转变。薄膜的特征在于X射线衍射技术,原子力显微镜,UV可见光光谱和拉曼光谱分别用于它们的结构性质,形态,带隙和声子模式的存在。通过使用Z扫描技术分析膜的强度依赖性非线性光学性质。 (c)2020美国光学学会

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