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Theoretical analysis of large negative dispersion photonic crystal fiber with small confinement loss

机译:大型监控损失大负散光子晶体纤维的理论分析

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摘要

Solid core circular and octagonal photonic crystal fibers (CPCF and OPCF) are proposed for analyzing different guiding properties such as dispersion, effective mode area, nonlinearity, and confinement loss from 0.8 to 2.6 mu m wavelength. The proposed structures use three different types of background materials: SF10, BK7, and silica. Moreover, the fill fraction is varied by changing the diameter of the air hole where the lattice pitch is unchanged. The proposed PCFs show a high negative dispersion with low confinement loss and small effective mode area. In the proposed design, the finite element method with a perfectly matched layer absorbing boundary condition is used. At 1.8 mu m wavelength with 0.6 fill fraction, the maximum negative dispersion of -922.5 ps/(nm.km ) is observed for CPCF when the background material is SF10. In addition, at this particular wavelength, the confinement loss is observed to be very small. Moreover, -560.12 ps/(nm.km) dispersion is found for the similar condition at 1.55 wavelength. On the other hand, using BK7 as the background material, -706.77 ps/(nm.km) dispersion is found at 1.55 mu m wavelength for CPCF. Results also imply that CPCF shows better performance than OPCF for a wide wavelength range. Furthermore, at 1.55 mu m wavelength, silica-based glass exhibits maximum dispersion, whereas increasing wavelength flint type glass shows the similar result. Analyzing different guiding properties of PCFs has significant impact on broadband dispersion compensation applications, especially using SF10. (C) 2020 Optical Society of America
机译:提出了固体核心圆形和八角形光子晶体纤维(CPCF和OPCF),用于分析不同的引导性质,例如分散,有效的模式,非线性和从0.8至2.6μm的波长的限制损失。所提出的结构使用三种不同类型的背景材料:SF10,BK7和二氧化硅。此外,通过改变晶格间距不变的气孔的直径来改变填充部分。所提出的PCFS显示出具有低限制损失和小型有效模式区域的高负分散。在所提出的设计中,使用具有完美匹配的吸收边界条件的有限元方法。在0.6填充部分的1.8μm波长下,当背景材料是SF10时,为CPCF观察到-922.5ps /(nm.km)的最大负分散体。另外,在这种特定的波长下,观察到限制损失非常小。此外,发现-560.12 ps /(nm.km)分散在1.55波长下的类似条件。另一方面,使用BK7作为背景材料,-706.77 ps /(nm.km)分散体以1.55 mu m波长为Cpcf。结果还暗示CPCF显示出比OPCF在宽波长范围内的更好的性能。此外,在1.55μm波长下,二氧化硅基玻璃表现出最大的分散,而增加的波长燧石型玻璃显示出类似的结果。分析PCF的不同指导性能对宽带色散补偿应用产生重大影响,特别是使用SF10。 (c)2020美国光学学会

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  • 来源
    《Applied optics》 |2020年第28期|共7页
  • 作者单位

    Khulna Univ Elect &

    Commun Engn Discipline Khulna 9208 Bangladesh;

    Khulna Univ Elect &

    Commun Engn Discipline Khulna 9208 Bangladesh;

    Khulna Univ Elect &

    Commun Engn Discipline Khulna 9208 Bangladesh;

    Khulna Univ Elect &

    Commun Engn Discipline Khulna 9208 Bangladesh;

    Khulna Univ Elect &

    Commun Engn Discipline Khulna 9208 Bangladesh;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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