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Detailed theoretical investigation of bending properties in solid-core photonic bandgap fibers

机译:固核光子带隙光纤弯曲特性的详细理论研究

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摘要

In this paper, detailed properties of bent solid-core photonic bandgap fibers (SC-PBGFs) are investigated. We propose an approximate equivalent straight waveguide (ESW) formulation for photonic bandgap (PBG) edges, which is convenient to see qualitatively which radiation (centripetal or centrifugal radiation) mainly occurs and the impact of bend losses for an operating wavelength. In particular, we show that cladding modes induced by bending cause several complete or incomplete leaky mode couplings with the core mode and the resultant loss peaks. Moreover, we show that the field distributions of the cladding modes are characterized by three distinct types for blue-edge, mid-gap, and red-edge wavelengths in the PBG, which is explained by considering the cladding Bloch states or resonant conditions without bending. Next, we investigate the structural dependence of the bend losses. In particular, we demonstrate the bend-loss dependence on the number of the cladding rings. Finally, by investigating the impacts of the order of PBG and the core structure on the bend losses, we discuss a tight-bending structure. (C) 2009 Optical Society of America
机译:在本文中,研究了弯曲的实芯光子带隙光纤(SC-PBGF)的详细特性。我们提出了一种用于光子带隙(PBG)边缘的近似等效直线波导(ESW)公式,可以方便地定性查看主要发生哪种辐射(向心或离心辐射)以及弯曲损耗对工作波长的影响。特别地,我们表明,弯曲引起的包层模引起与芯模的几个完全或不完全的漏模耦合,并导致损耗峰。此外,我们表明,包层模式的场分布以PBG中蓝边,中隙和红边波长的三种不同类型为特征,这可以通过考虑包层的布洛赫状态或不弯曲的共振条件来解释。接下来,我们研究弯曲损耗的结构依赖性。特别是,我们证明了弯曲损耗对包层环数的依赖性。最后,通过研究PBG顺序和核心结构对弯曲损耗的影响,我们讨论了一种紧密弯曲的结构。 (C)2009年美国眼镜学会

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