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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Propagation of polarized light in opals: Amplitude and phase anisotropy
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Propagation of polarized light in opals: Amplitude and phase anisotropy

机译:偏振光在蛋白石中的传播:幅度和相位各向异性

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摘要

The interaction of linearly polarized light with photonic crystals based on bulk and thin-film synthetic opals is studied. Experimental transmission spectra and spectra showing the polarization state of light transmitted through opals are discussed. A change in polarization is found for waves experiencing Bragg diffraction from systems of crystallographic planes of the opal lattice. It is shown that the polarization plane of the incident linearly polarized wave at the exit from photonic crystals can be considerably rotated. In addition, incident linearly polarized light can be transformed to elliptically polarized light with the turned major axis of the polarization ellipse. Analysis of polarization states of transmitted light by using the transfer-matrix theory and homogenization theory revealed good agreement between calculated and experimental spectra.
机译:研究了基于块状和薄膜合成蛋白石的线性偏振光与光子晶体的相互作用。讨论了实验透射光谱和显示通过蛋白石透射的光的偏振态的光谱。发现从蛋白石晶格的晶体平面系统经历布拉格衍射的波的偏振变化。结果表明,在光子晶体出口处入射的线性偏振波的偏振面可以大大旋转。另外,入射的线性偏振光可以通过偏振椭圆的长轴转换为椭圆偏振光。利用转移矩阵理论和均质化理论对透射光的偏振态进行分析,发现计算光谱和实验光谱之间具有良好的一致性。

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