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Design, nano-fabrication and analysis of near-infrared 2D photonic crystal air-bridge structures

机译:近红外二维光子晶体气桥结构的设计、纳米制造与分析

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摘要

Selective wet etching is a technique that allows fabrication of freely suspended thin slabs in epitaxial heterostructures. This technique, together with high-aspect ratio dry etching, is used to create two-dimensional (2D) photonic crystals for near-infrared wavelengths in thin suspended AlGaAs membranes. The active photonic crystal areas contain hexagonal arrays of cylindrical holes completely perforating the membrane. For an appropriate selection of the slab thickness and the lattice parameter, dispersion relations for the guided modes are explicitly computed by solving the Maxwell equations in a geometry containing a 2D photonic crystal defined in the core layer of a dielectric waveguide structure. Measurements of the spectral transmittance in air-bridge samples show a narrow 30-dB-deep stop band for TM polarized incident light. The spectral position of the stop band shows a good agreement with theoretical band structure calculations when also the 'quasi-guided' resonant modes outside the light cone are taken into account. References: 20
机译:选择性湿法蚀刻是一种允许在外延异质结构中制造自由悬浮的薄板的技术。该技术与高深宽比干法蚀刻相结合,用于在悬浮的薄AlGaAs膜中产生近红外波长的二维(2D)光子晶体。活性光子晶体区域包含圆柱形孔的六边形阵列,完全穿孔膜。为了适当选择板厚和晶格参数,通过求解在介电波导结构的核心层中定义的二维光子晶体的几何结构中的麦克斯韦方程,显式计算导向模式的色散关系。对气桥样品中光谱透射率的测量表明,TM偏振入射光的阻带较窄,深度为30 dB。当考虑光锥外的“准导向”谐振模式时,阻带的光谱位置与理论能带结构计算非常吻合。[参考资料: 20]

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