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Finite-size limitations on quality factor of guided resonance modes in 2D photonic crystals

机译:二维光子晶体中导向共振模的品质因数的有限限制

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摘要

High-Q guided resonance modes in two-dimensional photonic crystals, enable high field intensity in small volumes that can be exploited to realize high performance sensors. We show through simulations and experiments how the Q-factor of guided resonance modes varies with the size of the photonic crystal, and that this variation is due to loss caused by scattering of in-plane propagating modes at the lattice boundary and coupling of incident light to fully guided modes that exist in the homogeneous slab outside the lattice boundary. A photonic crystal with reflecting boundaries, realized by Bragg mirrors with a band gap for in-plane propagating modes, has been designed to suppress these edge effects. The new design represents a way around the fundamental limitation on Q-factors for guided resonances in finite photonic crystals. Results are presented for both simulated and fabricated structures.
机译:二维光子晶体中的高Q引导共振模式可实现小体积的高场强,可用于实现高性能传感器。通过仿真和实验,我们表明了引导共振模式的Q因子如何随光子晶体的大小而变化,并且这种变化是由于晶面边界处的面内传播模式的散射和入射光的耦合引起的损耗引起的到存在于晶格边界之外的均质平板中的完全引导模式。为了抑制这些边缘效应,已设计出具有反射边界的光子晶体,该布拉格晶体由带隙的布拉格反射镜实现,用于平面内传播模式。这项新设计代表了一种方法,它可以解决有限光子晶体中引导共振的Q因子的基本限制。给出了模拟结构和装配结构的结果。

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