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Design of high birefringence and low confinement loss photonic crystal fibers with five rings hexagonal and octagonal symmetry air-holes in fiber cladding

机译:光纤包层五环六角对称和八角对称气孔的高双折射,低限制损耗光子晶体光纤的设计

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摘要

We present a new cladding design for high birefringence and low confinement loss photonic crystal fibers (PCFs) using a full-vector finite element method with anisotropic perfectly matched boundary layer. Six cases of PCFs are proposed for comparison. The proposed cladding in PCFs is composed of five rings of air-holes. Air-holes on the inner two rings are arranged in a hexagonal symmetry whereas, air-holes on the outer three rings are arranged in an octagonal symmetry in fused silica. Results show that suitable design air-holes on the inner two rings will significantly increase the birefringence, whereas, elliptical holes with major axis along x-axis on the outer three rings will provide strong confinement ability. The highest modal birefringence and lowest confinement loss of our proposed case five structure at the excitation wavelength of λ= 1550 nm can be achieved at a magnitude of 0.87 x 10~(-2) and less than 0.01 dB/km with only five rings of air-holes in fiber cladding.
机译:我们使用各向异性完美匹配边界层的全矢量有限元方法,为高双折射和低限制损耗光子晶体光纤(PCF)提出了一种新的包层设计。建议比较六种PCF。 PCF中建议的包层由五个气孔环组成。内部两个环上的气孔以六边形对称排列,而外部三个环上的气孔在熔融石英中以八边形对称排列。结果表明,在内两个环上合适的设计气孔会显着增加双折射,而在外三个环上具有沿x轴的长轴的椭圆形孔将提供强大的约束能力。我们建议的情况五结构在激发波长为λ= 1550 nm时的最高模态双折射和最低限度损耗可以在0.87 x 10〜(-2)的幅度下且小于0.01 dB / km的情况下获得,而只有五个环光纤包层中有气孔。

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  • 来源
    《Journal of Applied Physics》 |2011年第9期|p.093103.1-093103.5|共5页
  • 作者单位

    Graduate Institute of Applied Physics, National Taiwan University, Taipei 10617, Taiwan;

    Department of Electronic Engineering, Ching Yun University, Jung-Li 320, Taiwan;

    Graduate Institute of Applied Physics, National Taiwan University, Taipei 10617, Taiwan;

    Department of Electronic Engineering, Ching Yun University, Jung-Li 320, Taiwan;

    Graduate Institute of Applied Physics, National Taiwan University, Taipei 10617, Taiwan,Department of Physics, National Taiwan University, Taipei 10617, Taiwan Research Center for Applied Sciences, Academia Sinica, Taipei 115, Taiwan and Instrument Technology Research Center, National Applied Research Laboratories, Hsinchu 300, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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