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Coupled-Wave Theory for Square-Lattice Photonic Crystal Lasers With TE Polarization

机译:TE偏振方格光子晶体激光器的耦合波理论

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We present a coupled-wave analysis for square-lattice photonic crystal lasers with transverse electric polarization. A model consisting of eight plane waves coupled by Bragg diffraction is used to describe two-dimensional optical coupling. The resonant frequencies and threshold criteria for the modes of oscillation have been determined for the case of index periodicity with a lattice of circular holes. The spatial intensity distributions of these resonant modes have also been calculated. For the fundamental modes, we have investigated how the intensity distribution varies as a function of coupling strength. The dependence of the threshold gain of these modes on hole size has also been elucidated. This semianalytical approach provides a comprehensive understanding of square-lattice photonic crystal lasers and allows more effective optimization of their cavity design.
机译:我们提出了具有横向电偏振的方格光子晶体激光器的耦合波分析。由八个由布拉格衍射耦合的平面波组成的模型用于描述二维光学耦合。对于具有圆孔格子的折射率周期性情况,已经确定了振荡模式的共振频率和阈值标准。这些共振模式的空间强度分布也已经计算出来。对于基本模式,我们研究了强度分布如何随耦合强度变化。这些模式的阈值增益对孔尺寸的依赖性也已经阐明。这种半分析方法可以全面了解方格光子晶体激光器,并可以更有效地优化其腔体设计。

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