医学成像用超连续谱产生杂化聚合物光子晶体光纤的设计与分析

Shahba Tasmiya Mouna, A. Habib, M. S. Alam
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摘要

本文提出了一种具有三角形晶格结构的单模混合聚合物光子晶体光纤(PCF),该光纤可能产生超连续介质。混合聚合物PCF由气孔外表面几纳米的薄硅玻璃层组成。这种空气-硅-聚合物组合使得PCF具有极高的非线性参数和较小的模态有效面积。结果表明,该超连续谱的产生范围在500nm到2166nm以上,可用于高性能光学相干层析成像(OCT)系统,该系统需要具有足够亮度和穿透深度的相干宽带光源。本文还分析并报道了脉冲功率、脉冲持续时间、脉冲光场长度等因素对超连续谱的影响。
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Design and Analysis of Supercontinuum Generating Hybrid Polymer Photonic Crystal Fiber for Medical Imaging
In this work, a single mode hybrid polymer photonic crystal fiber (PCF) having triangular lattice structure is proposed for possible supercontinuum generation. The hybrid polymer PCF is comprised of thin silica glass layers of few nanometres at the outer surface of the air holes. This air-silica-polymer combination makes the PCF highly nonlinear with extremely high nonlinear parameter and smaller modal effective area. Results show that the supercontinuum generation ranges from 500nm to more than 2166nm, which may be useful in the field of high performance optical coherence tomography (OCT) imaging systems, where a coherent and broadband light source with sufficient brightness and penetration depth is required. The effects of pulse power, pulse duration, length of PCF, etc., on supercontinuum spectra are also analysed and reported here.
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