首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Analysis of strictly bound modes in photonic crystal fibers by use of a source-model technique
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Analysis of strictly bound modes in photonic crystal fibers by use of a source-model technique

机译:利用源模型技术分析光子晶体光纤中的严格束缚模

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We describe a source-model technique for the analysis of the strictly bound modes propagating in photonic crystal fibers that have a finite photonic bandgap crystal cladding and are surrounded by an air jacket. In this model the field is simulated by a superposition of fields of fictitious electric and magnetic current filaments, suitably placed near the media interfaces of the fiber. A simple point-matching procedure is subsequently used to enforce the continuity conditions across the interfaces, leading to a homogeneous matrix equation. Nontrivial solutions to this equation yield the mode field patterns and propagation constants. As an example, we analyze a hollow-core photonic crystal fiber. Symmetry characteristics of the modes are discussed and exploited to reduce the computational burden.
机译:我们描述了一种源模型技术,用于分析在具有有限光子带隙晶体包层并被空气夹套包围的光子晶体光纤中传播的严格束缚模式。在该模型中,通过虚拟电流和磁流灯丝的场的叠加来模拟该场,这些场被适当地放置在光纤的介质界面附近。随后使用一个简单的点匹配过程来强制跨接口的连续性条件,从而导致齐次矩阵方程式。该方程的非平凡解会产生模式场模式和传播常数。例如,我们分析了空心光子晶体光纤。讨论并利用了模式的对称特性以减少计算负担。

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