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Numerical analysis for a solid-core photonic crystal fiber with tunable zero dispersion wavelengths

机译:可调零色散波长的实芯光子晶体光纤的数值分析

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摘要

Here we propose a simple design for a solid-core photonic crystal fiber made of silica by keeping the golden ratio (1.618) between pitch and air hole diameter Λ/d in a subset of six rings of air-holes with hexagonal arrangement. In the case when we have a pitch equal to one micron (Λ =1 μm), we need air-holes diameters d=0.618 μm in order to obtain the golden ratio parameter (Λ/d=1.618), and achieve two zero dispersion wavelength (ZDW) points at 725 ran and 1055 run; this gives us the possibility to use this fiber in supercontinuum generation using a laser emission close to that points. We analyzed a series of fibers using this relation and show the possibilities of tunable ZDW in a wide range of wavelengths from 725 nm to 2000 nm with low losses and small effective area. In agreement with the ZDW point needed, the geometry of the structure can be modified to the point of having only three rings of air holes that surround the solid core with low losses and good confinement mode. The design proposed here is analyzed using the finite element method (FEM) with perfectly matched layers (PML), including the material dispersion directly into the model applying the Sellmeier's equation.
机译:在这里,我们通过在六边形排列的六个气孔环的子集中保持节距和气孔直径Λ/ d之间的黄金比率(1.618),提出了一种由二氧化硅制成的固核光子晶体光纤的简单设计。在间距等于1微米(Λ= 1μm)的情况下,我们需要气孔直径d = 0.618μm,以获得黄金比例参数(Λ/ d = 1.618),并实现两个零色散725(Ran)和1055(Rn)波长(ZDW)点这使我们有可能在接近该点的激光发射中将这种光纤用于超连续谱的产生。我们使用这种关系分析了一系列光纤,并显示了可调谐ZDW在725 nm至2000 nm的宽波长范围内具有低损耗和小有效面积的可能性。与所需的ZDW点一致,可以将结构的几何形状修改为只有三个气孔环,这些气孔以低损耗和良好约束模式围绕实心核。此处提出的设计使用具有完美匹配层(PML)的有限元方法(FEM)进行分析,包括使用Sellmeier方程将材料分散直接纳入模型中。

著录项

  • 来源
  • 会议地点 San Diego CA(US)
  • 作者单位

    Departamento de Ingenieria Electronica, Division de Ingenierias, Campus Irapuato-Salamanca, Universidad de Guanajuato, Carretera Salamanca-Valle de Santiago km 3.5 + 1.8 km, Comunidad de Palo Blanco, Salamanca, Gto., C. P. 36885, Mexico;

    Departamento de Ingenieria Electronica, Division de Ingenierias, Campus Irapuato-Salamanca, Universidad de Guanajuato, Carretera Salamanca-Valle de Santiago km 3.5 + 1.8 km, Comunidad de Palo Blanco, Salamanca, Gto., C. P. 36885, Mexico;

    Departamento de Ingenieria Electronica, Division de Ingenierias, Campus Irapuato-Salamanca, Universidad de Guanajuato, Carretera Salamanca-Valle de Santiago km 3.5 + 1.8 km, Comunidad de Palo Blanco, Salamanca, Gto., C. P. 36885, Mexico;

    Departamento de Estudios Multidisciplinarios, Division de Ingenierias, Campus Irapuato-Salamanca, Universidad de Guanajuato, Av. Universidad s, Col. Yacatitas, Yuriria Gto.,C. P. 38940, Mexico;

    Departamento de Ingenieria Electronica, Division de Ingenierias, Campus Irapuato-Salamanca, Universidad de Guanajuato, Carretera Salamanca-Valle de Santiago km 3.5 + 1.8 km, Comunidad de Palo Blanco, Salamanca, Gto., C. P. 36885, Mexico;

    Departamento de Optica, Instituto Nacional de Astrofisica, Optica y Electronica, L. E. Erro 1, Puebla, Puebla ,C. P. 72000, Mexico;

    Centro de Investigaciones en Optica, A. C., Loma del Bosque 115, Leon, Gto., C. P 37150, Mexico;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Supercontinuum Generation; fiber characterization; photonic crystal fibers; zero dispersion wavelength;

    机译:超连续谱生成;光纤特性光子晶体光纤;零色散波长;

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