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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Growth and optical properties of Fe2O3 thin films: A study of quantum confinement effects by experiment and theory
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Growth and optical properties of Fe2O3 thin films: A study of quantum confinement effects by experiment and theory

机译:Fe2O3薄膜的生长和光学性质:实验与理论研究量子监禁效应

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Thin iron films in the thickness range 0.7-48 nm have been deposited on high quality Corning glass and Si(100) substrates by radio frequency magnetron sputtering. The films were then oxidized by annealing at temperatures of 400-450 degrees C in a furnace in air. X-ray diffraction experiments revealed the formation of single-phase alpha-Fe2O3. The films were continuous and present negligible surface roughness. Ultraviolet-visible light absorption spectroscopy has shown a blue shift of both, the indirect and direct band gaps of hematite. The experimental results are interpreted as evidences of quantum confinement effects. This is facilitated by theoretical calculations based on Hartree Fock approximation as applied for an electron-hole system, in the framework of effective mass approximation. The agreement between theory and experiment supports the quantum confinement interpretation.
机译:薄的铁膜在厚度范围为0.7-48nm,通过射频磁控溅射沉积在高质量的康宁玻璃和Si(100)基板上。 然后通过在空气中的炉中的400-450摄氏度的温度下退火来氧化膜。 X射线衍射实验显示单相α-Fe2O3的形成。 薄膜是连续的并且具有可忽略的表面粗糙度。 紫外线可见光吸收光谱显示出赤铁矿间接和直接带间隙的蓝色偏移。 实验结果被解释为量子监禁效应的证据。 这是基于施加用于电子孔系统的Hartree Fock近似的理论计算,在有效质量近似的框架中,这是促进的。 理论与实验之间的协议支持量子监禁解释。

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