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Low loss coupling and splicing of standard single mode fibers with all-solid soft-glass microstructured fibers for supercontinuum generation

机译:标准单模光纤与全固态软玻璃微结构光纤的低损耗耦合和拼接,可产生超连续谱

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摘要

In this work we would like to present the results of low loss coupling of a novel soft glass fiber for super continuum generation with standard single mode fiber by a filament splicing method. For our experiment we used an all solid soft glass microstructured fiber (MSF) made from a composition of F2 lead-silicate glass and NC21 borosilicate glass. The structure and material properties of the fiber were optimized to achieve all normal dispersion (ND) flattened around 1560 nm, which offers two general advantages for supercontinuum generation. The ND supercontinuum avoids soliton dynamics, hence it is less sensitive to pump laser shot noise and has larger degree of coherence than supercontinuum in the anomalous dispersion range. Furthermore flattening around 1560 nm indicates optimal supercontinuum pump wavelength, which is readily available from erbium doped femtosecond fiber lasers. Using Vytran splicing station (GPX3400) we were able to achieve repeatable splice loss between a standard fused-silica single mode fiber (SMF28) and the low-melting-temperature soft glass MSF as low as 2.12 dB @1310 nm and 1.94 dB @ 1550 nm. The developed very low loss splicing technology together with the above mentioned all solid soft glass MSF advantages give very promising perspectives for commercial applications.
机译:在这项工作中,我们要介绍一种通过长丝拼接方法将新型软玻璃纤维与标准单模光纤进行超连续谱产生的低损耗耦合结果。对于我们的实验,我们使用由F2铅硅酸盐玻璃和NC21硼硅酸盐玻璃组成的全固态软玻璃微结构纤维(MSF)。对光纤的结构和材料性能进行了优化,以实现在1560 nm附近变平的所有正常色散(ND),这为超连续谱的产生提供了两个普遍的优势。 ND超连续谱避免了孤子动力学,因此在异常色散范围内,它对泵浦激光散粒噪声的敏感性较低,并且相干度比超连续谱更大。此外,在1560 nm附近变平表示最佳的超连续谱泵浦波长,这很容易从掺do的飞秒光纤激光器获得。使用Vytran熔接站(GPX3400),我们能够在标准的熔融石英单模光纤(SMF28)和低熔点软玻璃MSF之间实现可重复的熔接损耗,在1310 nm处低至2.12 dB,在1550 nm处低至1.94 dB纳米所开发的极低损耗的拼接技术以及上述所有固态软玻璃MSF优势,为商业应用提供了非常有希望的前景。

著录项

  • 来源
    《Optical components and materials XI》|2014年|898228.1-898228.6|共6页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Institute of Electronic Materials Technology, ul. Wolczynska 133, 01-919 Warsaw, Poland,University of Warsaw, Faculty of Physics, ul. Pasteura 7, 02-093 Warsaw, Poland;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

    Military University of Technology, Kaliskiego 2, Warsaw;

    Institute of Electronic Materials Technology, ul. Wolczynska 133, 01-919 Warsaw, Poland,University of Warsaw, Faculty of Physics, ul. Pasteura 7, 02-093 Warsaw, Poland;

    Military University of Technology, Kaliskiego 2, Warsaw,Inphotech Ltd. Slominskiego 17/31 Warsaw;

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

    fusion splicing; soft-glass; microstructured optical fiber; supercontinuum generation; GVD engineering;

    机译:熔接软玻璃微结构光纤超连续谱生成GVD工程;

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