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Photonic and Polaritonic Band Gaps in 2D Macroporous Silicon Structures

机译:二维大孔硅结构中的光子和极化子带隙

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摘要

Out-of-plane optical transmission spectra of 2D photonic macroporous silicon structures are investigated. By the plane wave expansion method all possible 2D lattice symmetries are considered and analyzed both in general case and for p-, s-polarizations. Sharp increase of absorption and formation of photonic band gaps is measured for wavelengths between one and two optical periods of macroporous silicon structure. Thus, for periodic structures one photonic band gap is formed, and some narrow peaks of density of states are formed for structure with the arbitrary macropore distribution. Theoretically unpredicted reduction in the transmittance of electromagnetic radiation and the step formation are observed for wavelengths less than optical period of macropores. Transmission spectra of macroporous silicon as well as steps were explained by a model of directed and decay optical modes formed by macroporous silicon as a short wave-guide structure. Prevalence of absorption over reflection of light, dependence of photoconductivity on incidence angle of the electromagnetic radiation testify to formation of the polaritonic type band formation.
机译:研究了二维光子大孔硅结构的面外光学透射光谱。通过平面波扩展方法,在一般情况下以及对于p,s极化,都考虑并分析了所有可能的2D晶格对称性。对于大孔硅结构的一个和两个光学周期之间的波长,测量了吸收的急剧增加和光子带隙的形成。因此,对于周期性结构,形成了一个光子带隙,并且对于具有任意大孔分布的结构,形成了一些窄的状态密度峰。对于小于大孔的光学周期的波长,观察到理论上电磁辐射的透射率未预料到的降低和台阶形成。大孔硅的透射光谱以及台阶都通过由大孔硅作为短波波导结构形成的定向和衰减光学模式的模型来解释。吸收率高于光反射率,光电导率与电磁辐射的入射角相关,证明形成了极化子型能带。

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