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Spatial filtering using dielectric photonic crystals at beam-type excitation

机译:在束型激发下使用介电光子晶体进行空间滤波

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摘要

Spatial filtering is demonstrated at beam-type excitations by utilizing finite thickness slabs of two-dimensional dielectric photonic crystals (PCs) showing exotic Fabry-Perot resonances that are preserved over a wide range of variation of the incidence angle. Bandstop and dual-bandpass filtering effects are illustrated theoretically and the corresponding filters are validated in the microwave experiments by using square-lattice PCs. It is shown that the basic transmission features that were observed earlier for a plane-wave illumination are also recognizable at beam-type excitations. The proposed spatial filtering mechanism exhibits directional beaming. The desired widths and the locations of the passbands and stopbands are attainable in the angle domain with a proper choice of the operating frequency for the given excitation characteristics. © 2010 American Institute of Physics.
机译:通过利用二维介电光子晶体(PC)的有限厚度平板,显示出奇异的Fabry-Perot共振,并在入射角的宽范围变化中得以保留,在光束型激发条件下证明了空间滤波。从理论上说明了带阻和双带通滤波效果,并在微波实验中使用了方格PC对相应的滤波器进行了验证。结果表明,在束型激发下也可以识别较早观察到的平面波照明的基本透射特征。提出的空间滤波机制表现出定向波束。对于给定的激励特性,通过适当选择工作频率,可以在角域中获得所需的宽度以及通带和阻带的位置。 ©2010美国物理研究所。

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