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Generation of terahertz signal by photomixing Kelly sidebands of mode-locking fiber laser

机译:通过模锁光纤激光器的光学凯利边带产生太赫兹信号

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We investigate the photomixing Kelly sidebands of soliton mode-locking fiber laser to generate the Terahertz (THz) signal. A simulation model about soliton fiber laser with obvious ±1 order Kelly sidebands is built up to design the sidebands with strong intensity, narrow bandwidth and adjustable spacing. It is found that the parameters of mode-locking fiber laser such as the total dispersion, filtering bandwidths, pump power of the laser play significant roles in determining the features of the ±1 order Kelly sidebands and the relationships between them are investigated. By photomixing the ±1 order sidebands, the experimental result shows that the desired THz signals with high optical-to-THz conversion are generated at frequencies of 0.187THz from the lab-made Yb-doped mode-locking fiber lasers. Well-designed Er-doped ring-cavity soliton fiber laser is used for obtaining THz signal of narrow linewidth with 1.35THz frequency tunable range.
机译:我们研究了孤子模式锁定光纤激光器的光镜凯利边带,以产生太赫兹(THz)信号。 建立了一个关于孤子光纤激光器的仿真模型,采用明显的±1阶凯利边带设计,设计具有强大强度,窄带宽和可调节间距的边带。 结果发现,锁模光纤激光器的参数如总色散,滤波带宽,激光的泵浦功率在确定±1阶凯利边带的特征时显着的作用,并研究了它们之间的关系。 通过将±1阶面带光掩盖,实验结果表明,具有高光学到THz转换的所需的THz信号在4187thz的频率从实验室制造的YB掺杂的模式锁定光纤激光器产生。 精心设计的ER掺杂环腔孤子光纤激光器用于获得窄线宽的THz信号,频率可调范围为1.35次。

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