参数控制的金属介电磁光子晶体

A. I. Pavlov, S. Tarapov
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引用次数: 0

摘要

本文表明,在毫米和亚毫米范围的一维光子和磁光子晶体中,薄(1…10 nm)的金属层可以平滑区域结构并缩小反射带。电磁能量分为吸收波和反射波;传播率很低,可以忽略不计。由于它的光学深度(等于它的几何深度除以它的折射率)与波长的比例非常低,金属层不会给光子晶体(PC)带结构带来任何额外的通过或停止带。光谱平滑和反射带窄化效应的强度与金属层的厚度和电导率成正比增加,与相邻金属层之间的距离(即两个顺磁/介电层的厚度总和)成正比降低。这种效果不依赖于金属的介电常数和渗透率(同样,由于它的光学深度很低)。金属介质磁光子晶体可以利用外加磁场有效地改变其反射率区。调谐范围将取决于初始顺磁化率和谐振曲线的宽度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametrically-Controlled Metallodielectric Magnetophotonic Crystals
In this paper, it was shown that when used in 1D photonic and magnetophotonic crystals of millimeter and sub-millimeter range, thin (1..10 nm) metallic layers can be used to smoothen the zone structure and narrow the reflection bands. The electromagnetic energy is split into absorbed and reflected waves; the transmission is very low and can be neglected. Due to the very low ratio of it's optical depth (equal to it's geometrical depth divided by it's refractive index) to the wavelength, the metallic layer doesn't bring any additional pass or stop bands into the photonic crystal's (PC) zone structure. The strength of the spectrum smoothing and reflection band narrowing effect increases proportionally to the thickness and electric conductivity of the metallic layer, and decreases proportionally to the distance between the adjacent metallic layers (i.e. the summed thickness of the two paramagnetic/dielectric layers). The effect doesn't depend on permittivity and permeability of the metal (again, due to it's low optical depth). With metallodielectric magnetophotonic crystals it becomes possible to effectively shift the reflectivity zone(s) by means of external magnetic field. Tuning range will depend on the initial paramagnetic susceptibility and the width of the resonant curve.
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