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采用自行研制的长波长增益光纤的1610纳米全光纤锁模千兆赫飞秒激光器。

All-fiber mode-locked gigahertz femtosecond laser at 1610 nm using a self-developed long-wavelength gain fiber.

作者信息

Xiao Yongbao, Kuang Ludong, Hu Xu, Ye Yichen, Wang Weichao, Lin Wei, Ji Yao, Wan Jie, Yang Changsheng, Xu Shanhui, Wei Xiaoming, Zhang Qinyuan

出版信息

Opt Lett. 2022 Feb 15;47(4):981-984. doi: 10.1364/OL.451374.

Abstract

We report a compact all-fiber passively mode-locked ultrafast laser with a fundamental repetition rate of 1.6 GHz that uses a self-developed long-wavelength active fiber, i.e., a fluoro-sulfo-phosphate-based Er/Yb co-doped fiber (only 6.2 cm in length). This active fiber can provide a net gain coefficient of 0.6 dB/cm at 1610 nm. The high-repetition-rate all-fiber mode-locked laser operates at a low pump power of only approximately 90 mW. The mode-locked pulse train has a period of 625 ps and a 3 dB bandwidth of 7.0 nm, which can support a transform-limited pulse width of 390 fs.

摘要

我们报道了一种紧凑的全光纤被动锁模超快激光器,其基频重复频率为1.6 GHz,采用了自行研制的长波长有源光纤,即氟硫磷酸盐基铒/镱共掺杂光纤(长度仅为6.2 cm)。这种有源光纤在1610 nm处可提供0.6 dB/cm的净增益系数。高重复频率全光纤锁模激光器仅在约90 mW的低泵浦功率下工作。锁模脉冲序列的周期为625 ps,3 dB带宽为7.0 nm,可支持390 fs的变换极限脉冲宽度。

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