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Doping concentration distribution in 2-signal LP-mode ring-core erbium-doped fiber

机译:掺杂浓度分布在2信号LP模式环芯掺铒光纤

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摘要

We simulated an improvement in fiber characteristics, specifically the differential modal gain (DMG) and the LP11 mode wavelength dependent gain (WDG) characteristics. We defined the DMG as the gain difference between the C-band wavelength-division multiplexing signal channels of the LP01 and LP11 modes at the shortest wavelength, and WDG was the gain difference between the signal gain of the LP11 mode at the shortest and longest wavelengths, when the DMG of the LP01 mode was zero. We achieved this improvement by changing the erbium doping distribution in ring-core erbium-doped fiber (RC-EDF), which has been attracting attention as an amplification medium for a 2-mode (LP01 and LP11 modes) erbium-doped fiber amplifier for mode-division multiplexed transmission. We applied an a-th power profile, trapezoid profile, and right and left triangular profiles to the RC-EDF. We found that the DMG value changed from negative to positive despite the value of the LP11 mode WDG being positive, and confirmed that the DMG could be adjusted by changing the distribution. We show level curve maps of the DMG, LP11 mode WDG, pump power, and EDF length on the allowable 2-signal-mode area map for inner and outer radius combinations of the RC-EDF, and clarify that it is possible to realize a region that provides high-efficiency amplification with a low DMG of vertical bar 0.1 vertical bar dB and a low WDG of 0.1 dB. Furthermore, we show that by varying the distribution of the erbium doping concentration, we can greatly change the position of the region on the map of the allowable 2-signal-mode area. (c) 2017 Optical Society of America
机译:我们模拟了光纤特性的改进,特别是差分模态增益(DMG)和LP11模式波长相关增益(WDG)特性。我们将DMG定义为最短波长的LP01和LP11模式的C波段波长分复用信号通道之间的增益差,并且WDG是在最短和最长波长下LP11模式的信号增益之间的增益差当LP01模式的DMG为零时。通过改变环核掺铒光纤(RC-EDF)中的铒掺杂分布来实现这一改进,该掺杂掺杂纤维(RC-EDF)被吸引为2-型(LP01和LP11模式)erbium掺杂的纤维放大器的放大介质模式分割多路复用传输。我们应用于RC-EDF的第A电源型材,梯形曲线和左三角形配置。我们发现,尽管LP11模式WDG的值为正,但DMG值从负变为正数,并且确认可以通过改变分布来调整DMG。我们在允许的2信号模式区域图上显示DMG,LP11模式WDG,泵电源和EDF长度的级别曲线映射,用于RC-EDF的内部和外部半径组合,并阐明了可以实现a提供高效率放大的区域,具有低DMG<垂直杆0.1垂直杆DB和低WDG的< 0.1 dB。此外,我们表明,通过改变掺铒浓度的分布,我们可以大大改变允许的2信号模式区域的地图上区域的位置。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第36期|共6页
  • 作者单位

    Osaka Prefecture Univ Dept Elect &

    Info Syst Naka Ku 1-1 Gakuen Cho Sakai Osaka 5998531 Japan;

    Osaka Prefecture Univ Dept Elect &

    Info Syst Naka Ku 1-1 Gakuen Cho Sakai Osaka 5998531 Japan;

    Osaka Prefecture Univ Dept Elect &

    Info Syst Naka Ku 1-1 Gakuen Cho Sakai Osaka 5998531 Japan;

    Osaka Prefecture Univ Dept Elect &

    Info Syst Naka Ku 1-1 Gakuen Cho Sakai Osaka 5998531 Japan;

    NTT Corp NTT Device Technol Labs 3-1 Morinosato Wakamiya Atsugi Kanagawa 2430198 Japan;

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