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Area scalable and period manipulable three-dimensional optically-induced photorefractive photonic periodic crystal or aperiodic quasicrystal

机译:面积可缩放且可周期操作的三维光致光折变光子周期晶体或非周期性准晶体

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摘要

We experimentally investigate the formation of area-scalable three-dimensional (3D) photonic periodic crystal and aperiodic quasicrystal in an iron doped lithium niobate photorefractive material by multi-wedge prisms assisted compact and versatile single step optical induction approach. The induced large-area lattice microstructures are analyzed and verified by plane wave guiding, BriUouin-zone spectroscopy, far field diffraction pattern imaging, angle-dependent transmission spectra. Our technique can be easily expanded for the larger area of photonic periodic crystal or aperiodic quasicrystal microstructures. We also demonstrate experimentally and theoretically the manipulation to the period of 3D photorefractive photonic lattices by engineered vertex angle of multi-wedge prisms. The intensity analyses of interference light fields show that (1) the 3D photonic lattice has not only different Z-axis longitudinal structure, but also different X-Y front structure to the corresponding 2D photonic lattice, and (2) there exist three sets of sub-lattices which are mutually nested to form the 3D triangle photonic crystal.
机译:我们通过多楔棱镜辅助紧凑和通用的单步光学感应方法,实验研究了掺铁铌酸锂光折变材料中面积可缩放的三维(3D)光子周期晶体和非周期性准晶体的形成。通过平面波导管,布氏区光谱,远场衍射图成像,角度相关的透射光谱对诱导的大面积晶格微观结构进行分析和验证。我们的技术可以轻松扩展到更大的光子周期晶体或非周期性准晶体微结构。我们还通过实验和理论上证明了通过设计多楔形棱镜的顶角对3D光折变光子晶格周期的控制。干涉光场的强度分析表明:(1)3D光子晶格不仅具有不同的Z轴纵向结构,而且具有与对应的2D光子晶格不同的XY正面结构,并且(2)存在三组亚相互嵌套以形成3D三角光子晶体的晶格。

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