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Development of hollow-core photonic bandgap fibres free of surface modes

机译:开发无表面模式的空心光子带隙光纤

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摘要

Conventional optical fibres can only guide light in a high refractive index core by total internal reflection. By using total internal reflections it is not possible to guide light in an air core. Light guidance in air is of great interest for various technological and scientific applications and has only recently been possible with the advent of photonic band gap fibres. However, the transmission performance of silica/air hollow-core photonic bandgap fibres has until now been affected by the existence of surface modes. These surface modes couple with the air-guided mode in specific spectral ranges inside the bandgap simultaneously increasing the attenuation and dispersion of the air-guided mode and reducing the useable bandwidth of the fibre. Therefore, for many applications it is important to eliminate surface modes or at least reduce their impact on the air mode. The fabrication of the first hollow-core photonic bandgap fibre with no surface modes is presented in this thesis. The fibre has state-of-the-art attenuation over the full spectral width of the bandgap. As a result of the elimination of surface modes the fibre presents increased bandwidth, reduced dispersion and dispersion slope compared to previous hollow-core photonic bandgap fibers. These advances have been possible due to the development of a modified fabrication method which makes the production of low-loss hollow-core fibers both simpler and 5 to 6 times quicker than previously. This development makes hollow-core fibres with improved performance more readily available than ever before
机译:常规的光纤只能通过全内反射来引导高折射率纤芯中的光。通过使用全内反射,不可能在空心中引导光。空气中的光导对于各种技术和科学应用都非常感兴趣,并且直到最近随着光子带隙光纤的出现才成为可能。然而,迄今为止,二氧化硅/空气中空光子带隙光纤的传输性能一直受到表面模式的影响。这些表面模式在带隙内的特定光谱范围内与空气引导模式耦合,同时增加了空气引导模式的衰减和色散并减少了光纤的可用带宽。因此,对于许多应用而言,重要的是消除表面模式或至少减少其对空气模式的影响。本文提出了无表面模态的第一条空心光子带隙光纤的制备方法。光纤在带隙的整个光谱宽度上具有最新衰减。与以前的中空光子带隙光纤相比,由于消除了表面模,光纤呈现出更高的带宽,更低的色散和色散斜率。由于改进的制造方法的发展,这些进步是可能的,该制造方法使低损耗空心纤维的生产既简单又比以前快5至6倍。这一发展使性能得到改善的空心纤维比以往任何时候都更容易获得

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    Amezcua-Correa Rodrigo;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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