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Creating and investigating the optical and electrophysical properties of a silicon nanocomposite that contains bismuth silicate

机译:创建和研究含有硅酸铋的硅纳米复合材料的光学和电物理特性

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摘要

A new method is presented for creating a silicon nanocomposite that contains bismuth silicate. The results are shown of a study of the structural, optical, and electrophysical properties of a thin layer of oxidized porous silicon that contains bismuth silicate. X-ray structural studies showed that a bismuth silicate phase is present in this layer. The absorption coefficient of the layer in the wavelength range from 400 to 900 nm was no greater than 70 cm(-1). This makes it possible to use it to create optical sensors of the integrated-optics type and in microstructures of silicon photonics. Thermal-activation studies of the composite in the temperature range from 100 to 600 K made it possible to reconstruct the energy distribution function of traps over the activation energy, needed for predicting its optical properties. (C) 2016 Optical Society of America.
机译:提出了一种制备含有硅酸铋的硅纳米复合材料的新方法。结果显示了对含有硅酸铋的氧化多孔硅薄层的结构、光学和电物理性质的研究。X射线结构研究表明,该层中存在硅酸铋相。该层在400-900 nm波长范围内的吸收系数不大于70 cm(-1)。这使得使用它来制造集成光学类型的光学传感器和硅光子学的微观结构成为可能。复合材料在100至600 K的温度范围内进行热活化研究,可以重建陷阱在活化能上的能量分布函数,这是预测其光学特性所必需的。(C) 2016 年美国光学学会。

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