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The study of dielectric materials as photonic crystals based on the mechanism of photonic band gap

机译:基于光子带隙机理的光子晶体研究介电材料

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We report theoretical concepts and experimental verification for three-dimensional photonic crystal. The occurrence of photonic band gap, tunability and mechanism are given. We have theoretically formulated expressions for refractive index, central wavelength and temperature tuning of the photonic band gap. The lowest limit of refractive index contrast to yield a gap for closed packed face centered cubic lattice is also reported, which will pave the way to fabricate photonic crystals of materials of lower refractive index in comparison to that of silicon. The work reported also includes the recent advances on the fabrication of photonic crystals.
机译:我们报告了三维光子晶体的理论概念和实验验证。给出了光子带隙,可调谐和机构的发生。我们具有用于光子带隙的折射率,中心波长和温度调谐的理论上配制的表达式。还报道了折射率的最低限度,以产生封闭式面对中心的立方晶格的间隙,这将铺平与硅相比制造较低折射率的材料的光子晶体。报告的工作还包括最近关于制造光子晶体的进展。

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