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首页> 外文期刊>Journal of Applied Physics >Linear and nonlinear optical properties of one-dimensional photonic crystals containing ZnO defects
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Linear and nonlinear optical properties of one-dimensional photonic crystals containing ZnO defects

机译:含ZnO缺陷的一维光子晶体的线性和非线性光学性质

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摘要

The linear and nonlinear optical properties of one-dimensional photonic crystals containing ZnO defects were studied by linear absorption spectroscopy and the femtosecond Z-scan technique. Photonic crystals containing ZnO defects, (Ta_2O_5/SiO_2)~5/ZnO/(SiO_2/Ta_2O_5)~5 were prepared using electron-beam deposition and magnetron sputtering. The transmission spectra of these photonic crystals revealed a defect mode resonance and a broad photonic band gap. The observed transmission spectra could be described by applying the optical transfer matrix formalism to the multilayer structure. When compared with the Z-scan curve of the ZnO film, that of the resonant photonic crystal exhibited a larger transmittance dip. The enhancement of the nonlinear absorption in the resonant photonic crystal is due to the strong confinement of the optical field.
机译:通过线性吸收光谱法和飞秒Z扫描技术研究了含ZnO缺陷的一维光子晶体的线性和非线性光学性质。利用电子束沉积和磁控溅射制备了含ZnO缺陷的光子晶体,(Ta_2O_5 / SiO_2)〜5 / ZnO /(SiO_2 / Ta_2O_5)〜5。这些光子晶体的透射光谱显示出缺陷模式共振和宽的光子带隙。可以通过将光学传递矩阵形式应用于多层结构来描述观察到的透射光谱。当与ZnO膜的Z扫描曲线比较时,共振光子晶体的Z扫描曲线表现出较大的透射率下降。共振光子晶体中非线性吸收的增强是由于光场的强烈限制。

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