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Photonic band gaps, defect characteristics, and waveguiding in two-dimensional disordered dielectric and metallic photonic crystals

机译:二维无序介电和金属光子晶体中的光子带隙,缺陷特征和波导

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摘要

We experimentally investigated the influence of positional disorder on the photonic band gap, defect characteristics, and waveguiding in two-dimensional dielectric and metallic photonic crystals. Transmission measurements performed on the dielectric photonic crystals have shown a stop band even if a large amount of disorder was introduced to these structures. On the other hand, the photonic band gap of the metallic crystals was found to be very sensitive to disorder, while the metallicity gap was not affected significantly. We addressed how the transmission characteristics of a cavity were affected in the presence of weak disorder. Since the translational symmetry was broken by disorders, we measured different cavity frequencies when we generated defects at various locations. We also demonstrated the propagation of photons by hopping through coupled-cavity structures in both dielectric and metallic two-dimensional photonic crystals. Effects of weak disorder on guiding and bending of electromagnetic waves through the coupled-cavity waveguides were also investigated.
机译:我们实验研究了二维电介质和金属光子晶体中位置无序对光子带隙,缺陷特征和波导的影响。即使将大量的无序引入这些结构,对电介质光子晶体进行的透射测量也显示出阻带。另一方面,发现金属晶体的光子带隙对无序非常敏感,而金属性间隙没有受到显着影响。我们解决了在弱障碍的情况下如何影响腔的传播特性。由于平移对称性被紊乱破坏,因此当我们在不同位置产生缺陷时,我们测量了不同的腔频率。我们还通过跃迁通过介电和金属二维光子晶体中的耦合腔结构演示了光子的传播。还研究了弱无序对通过耦合腔波导的电磁波的引导和弯曲的影响。

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