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Supercontinuum generation in photonic crystal fibers infiltrated with tetrachloroethylene

机译:用四氯甲基渗透到光子晶体纤维中的超连续体

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摘要

This study proposes a photonic crystal fiber made of fused silica glass, with the core infiltrated with tetrachloroethylene (C_2Cl_4) as a new source of supercontinuum (SC) spectrum. We studied numerically the guiding properties of the several different fiber structures in terms of characteristic dispersion, mode area, and attenuation of the fundamental mode. Based on the results, the structural geometries of three C_2Cl_4-core photonic crystal fibers were optimized in order to support the broadband SC generations. The first fiber structure with lattice constant 1.5 μm and filling factor 0.4 operates in all-normal dispersion. The SC with a broadened spectral bandwidth of 0.8-2 μm is generated by a pump pulse with a central wavelength of 1.56 μm, 90 fs duration and energy of 1.5 nJ. The second proposed structure, with lattice constant 4.0 μm and filling factor 0.45, performs an anomalous dispersion for wavelengths longer than 1.55 μm. With the same pump pulse as the first fiber, we obtained the coherence SC spectrum in an anomalous dispersion range with wavelength range from 1 to 2 μm. Meanwhile, the third selected fiber (lattice constant 1.5 μm, filling factor 0.55) has two zero dispersion wavelengths at 1.04 μm and 1.82 μm. The octave-spanning of the SC spectrum formed in this fiber was achieved in the wavelength range of 0.7-2.4 μm with an input pulse whose optical properties are 1.03 μm wavelength, 120 fs duration and energy of 2 nJ. Those fibers would be good candidates for all-fiber SC sources as cost-effective alternatives to glass core fibers.
机译:该研究提出了一种由熔融石英玻璃制成的光子晶体纤维,用四氯乙烯(C_2Cl_4)渗透的芯作为超级性超胰岛素(SC)光谱的新来源。在特征分散,模式区域和基本模式的衰减方面,我们在数值上进行了数量的几种不同光纤结构的引导性能。基于结果,优化了三个C_2CL_4芯光子晶体纤维的结构几何形状以支撑宽带SC代。具有晶格常数1.5μm的第一纤维结构和填充因子0.4在全常态分散中操作。具有0.8-2μm的扩大光谱带宽的SC由泵脉冲产生1.56μm,90 fs持续时间和1.5 nJ的能量的泵脉冲产生。第二所提出的结构,具有晶格常数4.0μm和填充因子0.45,对于波长而言,对于长于1.55μm的波长进行异常色散。利用与第一纤维相同的泵脉冲,我们在具有1至2μm的波长范围内获得的异常色散范围内的相干SC光谱。同时,第三选定纤维(晶格常数1.5μm,填充因子0.55)的两个零色散波长为1.04μm和1.82μm。在该纤维中形成的SC光谱的八度跨度在0.7-2.4μm的波长范围内实现,其中输入脉冲,其光学性质为1.03μm波长,120 fs持续时间和2 nj的能量。这些纤维将是全纤维SC源的良好候选者,作为玻璃芯纤维的经济有效替代品。

著录项

  • 来源
    《Optical and quantum electronics》 |2021年第4期|187.1-187.18|共18页
  • 作者单位

    Institute of Research and Development Duy Tan University Da Nang 550000 Vietnam;

    Department of Physics Vinh University Nghe An Province 182 Le Duan Vinh City Vietnam Faculty of Physics University of Warsaw Pasteura 5 02-093 Warsaw Poland Lukasiewicz Research Network - Institute of Microelectronic and Photonics Aleja Lotnikow 32/46 02-668 Warsaw Poland;

    Faculty of Physics University of Warsaw Pasteura 5 02-093 Warsaw Poland Lukasiewicz Research Network - Institute of Microelectronic and Photonics Aleja Lotnikow 32/46 02-668 Warsaw Poland;

    Institute of Physics University of Zielona G6ra Prof. Szafrana 4a 65-516 Zielona Gora Poland;

    Faculty of Physics University of Warsaw Pasteura 5 02-093 Warsaw Poland Lukasiewicz Research Network - Institute of Microelectronic and Photonics Aleja Lotnikow 32/46 02-668 Warsaw Poland;

    Faculty of Physics University of Warsaw Pasteura 5 02-093 Warsaw Poland Lukasiewicz Research Network - Institute of Microelectronic and Photonics Aleja Lotnikow 32/46 02-668 Warsaw Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photonic crystal fibers; Supercontinuum generation; Dispersion; Tetrachloroethylene; Nonlinear optics;

    机译:光子晶体纤维;超连续一代;分散;四氯乙烯;非线性光学;

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