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首页> 外文期刊>International Journal of Photoenergy >Prediction of the Bandgap of a Core-Shell Microsphere via Light Intensity Fluctuations
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Prediction of the Bandgap of a Core-Shell Microsphere via Light Intensity Fluctuations

机译:通过光强波动预测核-壳微球的带隙

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摘要

It has been experimentally observed that in the case of microspheres irradiated by light, the absorption wavelength shift occurs, known as the blueshift, with changing shell materials (i.e., by decreasing the refractive index of the shell). In the present investigation, we want to demonstrate it numerically by using the boundary element method. The material used for the simulation is a core-shell (SiO2and another material of a larger refractive index) microsphere and it is irradiated by unpolarized monochromatic light wave. This paper intends to demonstrate that it is possible to predict the bandgap of a core-shell microsphere resulting from two different bandgap materials and that the numerical simulation employed produces the blueshift.
机译:实验上已经观察到,在用光照射微球的情况下,随着壳材料的变化(即,通过降低壳的折射率),发生吸收波长的变化,称为蓝移。在本研究中,我们希望使用边界元方法进行数值模拟。用于模拟的材料是核-壳(SiO2和另一种折射率较大的材料)微球,并通过非偏振单色光波照射。本文旨在证明,可以预测由两种不同的带隙材料产生的核-壳微球的带隙,并且所采用的数值模拟会产生蓝移。

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