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Hybrid method of plane-wave and cylindrical-wave expansions for distributed Bragg-reflector pillars: formalism and its application to topological photonics

机译:分布式布拉格反光柱的平面波和圆柱波扩频的混合方法:形式主义及其在拓扑光子的应用

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摘要

A hybrid computational method of plane-wave and cylindrical-wave expansions for distributed Bragg-reflector (DBR) pillars is proposed. The plane-wave expansion is employed to represent the one-dimensional periodic structure of the DBR. The cylindrical-wave expansion is employed to describe the scattering by circular pillars with the DBR structure inside. This formalism enables us to calculate the radiation fields, t matrices, scattering cross sections, photonic band structures, and quality factors of the DBR pillars. Furthermore, optical properties of arrayed DBR pillars are also investigated with the aid of the multiple-scattering method. Using this formalism, we demonstrate explicitly that high Q photonic band modes including the so-called bound states in continuum are obtained both in isolated and arrayed DBR pillars. We also present a novel formation of gapless Dirac-cone surface states in a three-dimensional photonic crystal composed of a two-dimensional periodic arrangement of core-shell DBR pillars. (c) 2018 Optical Society of America.
机译:提出了一种用于分布式布拉格反射器(DBR)柱的平面波和圆柱波扩展的混合计算方法。使用平面波扩展来表示DBR的一维周期性结构。采用圆柱波膨胀来描述通过内部DBR结构的圆形柱的散射。这种形式主义使我们能够计算DBR柱的辐射场,T矩阵,散射横截面,光子带结构和质量因子。此外,还借助于多散射法研究了阵列的DBR柱的光学性质。使用这种形式主义,我们明确地证明了包括连续体中所谓的界定状态的高Q光子带模式,包括隔离和排列的DBR柱。我们还在三维光子晶体中呈现了一种新颖的无效锥形表面状态,其由核心壳DBR柱的二维周期性布置构成。 (c)2018年光学学会。

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