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Light exiting from real photonic band gap crystals is diffuse and strongly directional

机译:从真实的光子带隙晶体出射的光是漫射的且具有强方向性

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摘要

Any photonic crystal is in practice periodic with some inevitable fabricational imperfections. We have measured angle-resolved transmission of photons that are multiply scattered by this disorder in strongly photonic crystals. Peculiar non-Lambertian distributions occur as a function of frequency: due to internal diffraction, wide angular ranges of strongly reduced diffuse transmission coincide with photonic stop bands, while enhancements occur for directions outside stop gaps. We quantitatively explain the experiment with a model incorporating diffusion and band structure on equal footing. We predict that in the event of a photonic band gap, diffuse light at frequencies near band gap edges can exit only along isolated directions. Angle-resolved diffuse transmission appears to be the photonic equivalent of angle-resolved photoelectron spectroscopy.
机译:实际上,任何光子晶体都是周期性的,具有一些不可避免的制造缺陷。我们已经测量了在强光子晶体中被这种紊乱倍增散射的光子的角度分辨透射率。奇异的非朗伯分布是频率的函数:由于内部衍射,强烈减少的漫透射的宽角度范围与光子阻带相符,而在阻隙之外的方向则出现增强。我们用一个在等足点上结合了扩散和能带结构的模型来定量解释该实验。我们预测,在光子带隙的情况下,在带隙边缘附近的频率处的散射光只能沿着孤立的方向出射。角分辨散射透射似乎是角分辨光电子能谱的光子等效物。

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