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METHOD FOR CONFIGURING AIR-CORE PHOTONIC-BANDGAP FIBERS FREE OF SURFACE MODES

机译:配置无表面模态的空气光子禁带光纤的方法

摘要

Coupling of core modes to surface modes in an air core photonic-bandgap fiber (PBF) can cause large propagation losses. Computer simulations analyze the relationship between the geometry and the presence of surface modes in PBFs having a triangular hole pattern and identify ranges of core characteristic dimensions (e.g., radii) for which the fiber supports no surface modes (i.e., only core modes are present) over the entire wavelength range of the bandgap. In particular, for a hole spacing and a hole radius = 0.47 , the core supports a single mode and supports no surface modes for core radii between about 0.7 and about 1.05 , which suggests that such fibers should exhibit a very low propagation loss. The existence of surface modes can be predicted simply and expediently by studying either the bulk modes alone or the geometry of the fiber without requiring a full analysis of the defect modes.
机译:空芯光子带隙光纤(PBF)中纤芯模式与表面模式的耦合会导致较大的传播损耗。计算机模拟分析了具有三角孔图案的PBF中的几何形状与表面模式之间的关系,并确定了纤维不支持表面模式(即仅存在核心模式)的纤芯特征尺寸(例如半径)范围在带隙的整个波长范围内。特别地,对于孔间距和孔半径= 0.47,对于在大约0.7和大约1.05之间的芯半径,纤芯支持单模并且不支持表面模,这表明这种纤维应该表现出非常低的传播损耗。通过单独研究本体模式或纤维的几何形状,可以简单而方便地预测表面模式的存在,而无需全面分析缺陷模式。

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