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Experimental Observation of Strong Edge Effects on the Pseudodiffusive Transport of Light in Photonic Graphene

机译:强边缘效应对光子石墨烯中光的伪扩散传输的实验观察

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摘要

Photonic graphene is a two-dimensional photonic crystal structure that is analogous to graphene. We use 5 mm diameter Al_2O_3 rods placed on a triangular lattice with a lattice constant a = 8 mm to create an isolated conical singularity in the photonic band structure at a microwave frequency of 17.6 GHz. At this frequency, the measured transmission of microwaves through a perfectly ordered structure enters a pseudodiffusive regime where the transmission scales inversely with the thickness L of the crystal (L/a approx= 5). The transmission depends critically on the configuration of the edges: distinct oscillations with an amplitude comparable to the transmission are observed for structures terminated with zigzag edges, while these oscillations are absent for samples with a straight edge configuration.
机译:光子石墨烯是类似于石墨烯的二维光子晶体结构。我们将直径为5 mm的Al_2O_3棒放置在晶格常数为a = 8 mm的三角形晶格上,以在17.6 GHz微波频率下的光子带结构中创建孤立的圆锥奇点。在此频率下,微波通过完美有序结构的传输进入伪扩散状态,其中传输与晶体的厚度L成反比(L / a约等于5)。透射率主要取决于边缘的配置:对于以锯齿形边缘终止的结构,观察到幅度与透射率相当的明显振荡,而对于具有直边配置的样品,则不存在这些振荡。

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