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Carbon Nanomaterials Based Saturable Absorbers for Ultrafast Passive Mode-Locking of Fiber Lasers

机译:基于碳纳米材料的饱和吸收剂,用于纤维激光器的超快无源模式锁定

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This paper emphasizes on overviewing the developing progress of the state-of-the-art carbon nanomaterial-based saturable absorbers for passively mode-locked fiber lasers, including carbon nanotube (CNT), graphene, graphite and other carbon nanomaterials. With reviewing the performances of these proposed candidates, the characteristic parameters required for initiating and stabilizing the passive mode-locked fiber lasers are summarized for comparison and discussion. At first, the basic characteristics such as saturation intensity and self-amplitude-modulation (SAM) coefficients of the CNT material with different-wall types are discussed in detail. In comparison, the single-wall CNT possesses optical nonlinearity better than double-wall CNT, whereas the double-wall CNT exhibits wavelength tenability and the multi-wall CNT fails to initiate mode-locking. Subsequently, different graphene saturable absorbers with slightly changing their optical properties made by various fabrication technologies are introduced to take over the role of typical CNT saturable absorber. The detailed analyses on graphene saturable absorber for developing various types of passively mode-locked fiber lasers are overviewed. At last, other new-aspect graphite and carbon nanomaterials related saturable absorbers have emerged because they reveal similar optical nonlinearity with graphene but exhibit cost-effectiveness and easy-production. When changing saturable absorber from graphene to other carbon nanomaterials, the modulation depth is decreased but the saturation intensity is concurrently enlarged because of the disordered structure with increased interlayer spacing and reduced graphene content. At the current stage, selecting carbon nanomaterials with high nonlinear absorbance and low saturated intensity for large SAM coefficient is the golden rule for passively mode-locked the fiber lasers in future academic and industrial applications.
机译:本文强调概述了用于被动模式锁定的纤维激光器的最先进的碳纳米材料可饱和吸收剂的发展进程,包括碳纳米管(CNT),石墨烯,石墨和其他碳纳米材料。通过审查这些提出的候选者的性能,总结了启动和稳定被动模式锁定的光纤激光器所需的特征参数,以进行比较和讨论。首先,详细讨论了具有不同壁类型的CNT材料的饱和强度和自幅度调制(SAM)系数的基本特征。相比之下,单壁CNT具有比双壁CNT更好的光学非线性,而双壁CNT表现出波长折损性,并且多壁CNT不能启动模式锁定。随后,引入了不同的石墨烯可饱和吸收剂,略微改变通过各种制造技术制造的光学性质,以接管典型的CNT可饱和吸收器的作用。概述了石墨烯饱和吸收剂的详细分析,用于开发各种类型的被动模式锁定的光纤激光器。最后,出现了其他新宽视的石墨和碳纳米材料相关可饱和吸收剂,因为它们揭示了类似石墨烯的类似光学非线性,但表现出成本效益和易于生产。当将饱和吸收从石墨烯改变为其他碳纳米材料时,调制深度降低,但由于具有增加的中间间距和降低的石墨烯含量,饱和强度同时增大。在当前阶段,选择具有高非线性吸光度和大饱和强度的碳纳米材料对于大型SAM系数是被动模式锁定光纤激光器在未来的学术和工业应用中的黄金规则。

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