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首页> 外文期刊>Quality Control, Transactions >Stable Multi-Wavelength Thulium-Doped Fiber Laser With Two Cascaded Single-Mode-Four-Mode-Single-Mode Fiber Interferometers
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Stable Multi-Wavelength Thulium-Doped Fiber Laser With Two Cascaded Single-Mode-Four-Mode-Single-Mode Fiber Interferometers

机译:具有两个级联单模四模式单模光纤干涉仪的稳定的多波长掺杂光纤激光器

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摘要

We propose and experimentally demonstrate a multi-wavelength thulium-doped fiber laser using two cascaded single-mode-four-mode-single-mode (SFS) fiber interferometers and a 150-m-long highly nonlinear fiber. The transmission properties of SFS fiber interferometers with two different four-mode fiber (FMF) lengths are analyzed theoretically. The interferometer with a longer FMF is used to select specific wavelengths, and the one with a shorter FMF is used to stimulate more laser lines. By adjusting the polarization controller and increasing the pump power, the number of output laser channels and the wavelength spacings can be changed and switched. By selecting the proper length of the FMFs, 31 lasing lines are achieved with covering a wavelength range of $sim 22$ nm. The power fluctuation and the wavelength drift of the 31-wavelength operation for the proposed fiber laser are within 0.706 dB and 0.02 nm, respectively.
机译:我们提出并通过两种级联单模 - 四模式单模(SFS)光纤干涉仪和150米长的高度非线性纤维来实验和实验地演示了多波长掺杂光纤激光器。从理论上分析了具有两个不同四模光纤(FMF)长度的SFS光纤干涉仪的传输特性。使用更长的FMF的干涉仪用于选择特定波长,并且使用较短的FMF的那个用于刺激更多的激光线。通过调整偏振控制器并增加泵功率,可以改变输出激光通道的数量和波长间距的数量。通过选择FMFS的适当长度,通过覆盖<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“的波长范围来实现31条激光线http://www.w3.org/1999/xlink“> $ sim 22 $ nm。所提出的光纤激光器的31波长操作的功率波动和波长漂移分别在0.706dB和0.02nm。

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  • 来源
    《Quality Control, Transactions》 |2021年第1期|1197-1204|共8页
  • 作者单位

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Photonics Information Innovation Center Hebei Provincial Center for Optical Sensing Innovations College of Physics Science and Technology Hebei University Baoding China;

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Key Laboratory of All Optical Network and Advanced Telecommunication Network Ministry of Education Institute of Lightwave Technology Beijing Jiaotong University Beijing China;

    Information and Communication Engineering Osaka Institute of Technology Osaka Japan;

    Shanxi Provincial People’s Hospital Shanxi Medical University Taiyuan China;

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

    Optical fiber polarization; Optical fiber communication; Optical fiber sensors; Optical fiber dispersion; Interferometers; Fiber lasers; Quantum cascade lasers;

    机译:光纤偏振;光纤通信;光纤传感器;光纤分散;干涉仪;光纤激光器;量子级联激光器;

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