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Properties of a novel hybrid hollow core photonic crystal fiber

机译:新型杂化中空光子晶体光纤的性能

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摘要

We present a novel hybrid hollow-core photonic crystal fiber, which can confine and guide light in subwavelength-diameter air holes of core. The propagation mechanism of low-refractive-index hole is studied by evanescent field coupling and electromagnetic theory of optical waveguide transmission. The unique transmission characteristics in the novel fiber with new propagation mechanism are shown. The evanescent-field power fraction in the core holes can be changed flexibly between 10% and 50%. The confinement loss is very low in the broadband wavelength range 1-1.8 mu m, which is not limited by surface modes and photonic bandgap effect appearing in hollow-core photonic bandgap fibers. The excellent characteristics of matching mode area, high birefringence, single polarization and single mode in hollow-core fiber are obtained. The two-zero dispersion, broadband flattened dispersion and dispersion compensation properties of hollow-core fiber are also presented. The novel hybrid photonic crystal fiber has the characteristics of solid core fibers and is suitable for the application as hollow core fibers.
机译:我们提出了一种新型的混合空心光子晶体光纤,它可以将光限制并引导在亚波长直径的芯气孔中。利用e逝场耦合和光波导传输的电磁理论研究了低折射率空穴的传播机理。显示了具有新型传播机制的新型光纤的独特传输特性。芯孔中的van逝场功率分数可以在10%到50%之间灵活更改。在1-1.8μm的宽带波长范围内,限制损耗非常低,这不受中空光子带隙光纤中出现的表面模式和光子带隙效应的限制。在空心光纤中具有匹配模式区,高双折射,单偏振和单模的优良特性。还介绍了空心光纤的零二色散,宽带展平色散和色散补偿特性。新型的混合光子晶体光纤具有实心纤芯的特性,适合作为空心纤芯应用。

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