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基于PbS/CdS核壳量子点作为可饱和吸收体的被动调Q掺钕光纤激光器。

Passively Q-switched Nd-doped fiber laser based on PbS/CdS core/shell quantum dots as a saturable absorber.

作者信息

Fu Shenggui, Zhang Shuoshuo, Li Jinjian, Bai Zhidong, Wu Tiange, Man Zhongsheng

出版信息

Appl Opt. 2019 Apr 10;58(11):3036-3041. doi: 10.1364/AO.58.003036.

Abstract

In our work, PbS/CdS core/shell quantum dots with an absorption peak of 1043 nm were successfully employed as a modulator for achieving a passively Q-switched Nd-doped fiber laser. The saturation intensity and modulation depth of the film-type modulator were 7.6  MW/cm and 4.1%, respectively. Due to the protection of the CdS shell, the PbS core exhibited good photo-chemical stability, which led to the generation of stable passively Q-switched operation. The maximum average output power was 7.88 mW with a minimum pulse width of 235.7 ns. To our knowledge, this was the first demonstration focusing on the combination of quantum dot and Nd-doped fiber laser; in addition, 235.7 ns was the narrowest pulse width of a passively Q-switched Nd-doped fiber laser. Our results highlighted the excellent nonlinear absorption properties of PbS/CdS core/shell quantum dots and give significant guidance for future optical applications of quantum dots and demonstrations of pulsed Nd-doped fiber lasers.

摘要

在我们的工作中,成功地将吸收峰为1043 nm的硫化铅/硫化镉核壳量子点用作调制器,以实现被动调Q掺钕光纤激光器。薄膜型调制器的饱和强度和调制深度分别为7.6 MW/cm和4.1%。由于硫化镉壳层的保护,硫化铅核表现出良好的光化学稳定性,从而实现了稳定的被动调Q运转。最大平均输出功率为7.88 mW,最小脉冲宽度为235.7 ns。据我们所知,这是首次聚焦于量子点与掺钕光纤激光器相结合的演示;此外,235.7 ns是被动调Q掺钕光纤激光器最窄的脉冲宽度。我们的结果突出了硫化铅/硫化镉核壳量子点优异的非线性吸收特性,并为量子点未来的光学应用以及脉冲掺钕光纤激光器的演示提供了重要指导。

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