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首页> 外文期刊>Journal of the Korean Physical Society >Numerical Demonstration of the Blueshift of the Light Absorption Wavelength for a Layered Microsphere: Effects of Shell Thickness on the Blueshift
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Numerical Demonstration of the Blueshift of the Light Absorption Wavelength for a Layered Microsphere: Effects of Shell Thickness on the Blueshift

机译:层状微球的光吸收波长蓝移的数值演示:壳厚度对蓝移的影响

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摘要

The present study is an extension of former research where a double-layer (TiO2/SiO2) microsphere was irradiated by using monochromatic unpolarized plane light. The effect of the shell thickness on the blueshift is primarily investigated in this paper. For a common size (500 nm radius) of a core-shell sphere, various core sizes were chosen to make the shell layer have different thicknesses. With five pre-determined shell thicknesses, we could find the wavelength positions where light absorption should take place. We also demonstrate that the locations of the light, intensity fluctuations, i.e., the wavelengths of light absorption, move to smaller values (the blue side). Specifically: numerical calculations show that the absorption wavelengths changed from 580 nm to 463 nm as the shell layer thickness was changed from 250 nm to 50 nm. This may be the cause of the light. absorption at the smaller wavelength, which is called the blueshift. The blueshift demonstrated numerically in this investigation has been already seen in many experiments done by other groups.
机译:本研究是对以前的研究的扩展,该研究使用单色非偏振平面光照射双层(TiO2 / SiO2)微球。本文主要研究壳厚度对蓝移的影响。对于常见的核-壳球尺寸(半径为500 nm),选择了各种核尺寸以使壳层具有不同的厚度。使用五个预定的外壳厚度,我们可以找到应该发生光吸收的波长位置。我们还证明了光的位置,强度波动,即光吸收的波长移动到较小的值(蓝色侧)。具体而言:数值计算表明,随着壳层厚度从250 nm变为50 nm,吸收波长从580 nm变为463 nm。这可能是光亮的原因。在较小波长处的吸收,称为蓝移。在其他研究小组进行的许多实验中,已经看到了这项研究中以数字方式证明的蓝移现象。

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