非线性应用中硅和二氧化硅光子纳米线的色散特性

A. Rostami, S. Y. Shafiei, F. A. Aghdam, P. Faeghi
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引用次数: 0

摘要

用麦克斯韦方程的精确解研究了非线性应用中空气包层和硅包层硅光子线的色散特性。我们发现硅纳米线的GVD可以在光谱的红外区域针对不同的波长进行定制。相比之下,空气包层的二氧化硅锥形光纤需要几微米的直径,以便将零色散点扩展到红外波长。通过将二氧化硅丝浸泡在液体中,我们可以在红外中获得最小且平坦的GVD区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersion properties of silicon and silica photonic nanowires for nonlinear applications
Dispersion properties of air-clad and silica-coated silicon photonic wires for nonlinear applications are investigated with exact solutions of Maxwell's equations. We show that the GVD of silicon nanowires can be tailored for different wavelengths in the infrared region of the spectrum. In comparison, air-clad silica tapered fibers require diameters of several micrometers in order to extend the zero dispersion points to the infrared wavelengths. By immersing silica wires in liquid we can obtain a minimum and flat GVD region in the infrared.
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