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首页> 外文期刊>電子情報通信学会技術研究報告. 光通信システム. Optical Communication Systems >Observation of an optimum air-hole tapering for splicing between a conventional fiber and a photonic crystal fiber and the reduction of Fresnel reflection
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Observation of an optimum air-hole tapering for splicing between a conventional fiber and a photonic crystal fiber and the reduction of Fresnel reflection

机译:观察常规光纤与光子晶体纤维之间的拼接最佳空气孔锥度及近菲涅耳反射的减少

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摘要

We have already reported about an observation of a huge Fresnel reflection at a splicing point between a photonic crystal fiber (PCF) and a conventional fiber. This was caused by the difference of the refractive index in the claddings, which leads to a serious problem when utilizing PCF in optical communications. In this paper, the splicing characteristics between a PCF and a conventional fiber were measured in detail, and a splicing condition for suppressing the Fresnel reflection to below the Rayleigh scattering level was clarified. We also measured the cross-sectional structures of PCF near the splicing point by SEM, and a relation between reduction of the Fresnel reflection and air-hole form in the cladding of PCF was discussed.
机译:我们已经报道了在光子晶体纤维(PCF)和常规纤维之间的拼接点处的巨大菲涅耳反射观察。 这是由封端的折射率的差异引起的,这导致在光通信中使用PCF时发生严重问题。 本文详细测量了PCF和常规光纤之间的拼接特性,阐明了抑制瑞利散射水平以下菲涅耳反射的拼接条件。 我们还通过SEM测量了PCF附近PCF的横截面结构,并且讨论了PCF包层中的菲涅耳反射和空穴形式的减少之间的关系。

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