Février Sébastien, Beaudou Benoît, Viale Pierre
Xlim, UMR 6172 CNRS - University of Limoges 123 Avenue A Thomas, 87060 Limoges, France.
Opt Express. 2010 Mar 1;18(5):5142-50. doi: 10.1364/OE.18.005142.
It is now commonly accepted that, in large pitch hollow-core 'kagomé' lattice fibers, the loss spectrum is related to resonances of the thin silica webs in the photonic crystal cladding. Moreover, coherent scattering from successive holes' layers cannot be obtained and adding holes' layers does not decrease the loss level. In this communication, cross-comparison of experimental data and accurate numerical modeling is presented that helps demonstrate that waveguiding in large pitch hollow-core fibers arises from the antiresonance of the core surround only and does not originate from the photonic crystal cladding. The glass webs only mechanically support the core surround and are sources of extra leakage. Large pitch hollow-core fibers exhibit features of thin walled and thick walled tubular waveguides, the first one tailoring the transmission spectrum while the second one is responsible for the increased loss figure. As a consequence, an approximate calculus, based on specific features of both types of waveguides, gives the loss spectrum, in very good agreement with experimental data. Finally, a minimalist hollow-core microstructured fiber, the cladding of which consists of six thin bridges suspending the core surround, is proposed for the first time.
现在人们普遍认为,在大节距空心“ Kagomé”晶格光纤中,损耗谱与光子晶体包层中薄二氧化硅网的共振有关。此外,无法获得来自连续孔层的相干散射,并且增加孔层并不会降低损耗水平。在本通信中,给出了实验数据与精确数值模拟的交叉比较,这有助于证明大节距空心光纤中的波导仅源于纤芯周围的反共振,而并非源于光子晶体包层。玻璃网仅在机械上支撑纤芯周围,并且是额外泄漏的来源。大节距空心光纤展现出薄壁和厚壁管状波导的特征,前者调整传输谱,而后者导致损耗值增加。因此,基于这两种类型波导的特定特征进行的近似计算给出了损耗谱,与实验数据非常吻合。最后,首次提出了一种极简主义空心微结构光纤,其包层由六个悬浮纤芯周围的细桥组成。