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Single-wall carbon nanotubes and graphene oxide-based saturable absorbers for low phase noise mode-locked fiber lasers

机译:用于低相位噪声锁模光纤激光器的单壁碳纳米管和基于氧化石墨烯的可饱和吸收剂

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摘要

Low phase noise mode-locked fiber laser finds important applications in telecommunication, ultrafast sciences, material science, and biology, etc. In this paper, two types of carbon nano-materials, i.e. single-wall carbon nanotube (SWNT) and graphene oxide (GO), are investigated as efficient saturable absorbers (SAs) to achieve low phase noise mode-locked fiber lasers. Various properties of these wall-paper SAs, such as saturable intensity, optical absorption and degree of purity, are found to be key factors determining the performance of the ultrafast pulses. Reduced-noise femtosecond fiber lasers based on such carbon-based SAs are experimentally demonstrated, for which the phase noise has been reduced by more than 10 dB for SWNT SAs and 8 dB for GO SAs at 10 kHz. To the best of our knowledge, this is the first investigation on the relationship between different carbon material based SAs and the phase noise of mode-locked lasers. This work paves the way to generate high-quality low phase noise ultrashort pulses in passively mode-locked fiber lasers.
机译:低相位噪声锁模光纤激光器在电信,超快科学,材料科学和生物学等领域都有重要应用。在本文中,有两种类型的碳纳米材料,即单壁碳纳米管(SWNT)和氧化石墨烯( GO)被研究为实现低相位噪声锁模光纤激光器的有效饱和吸收器(SA)。这些墙纸SA的各种特性,例如饱和强度,光学吸收和纯度,是决定超快脉冲性能的关键因素。实验证明了基于这种碳基SA的降噪飞秒光纤激光器,在10 kHz的条件下,SWNT SA和GO SA的相位噪声均降低了10µdB以上和8 SAdB。据我们所知,这是首次研究基于碳材料的不同SA和锁模激光器的相位噪声之间的关系。这项工作为在被动锁模光纤激光器中产生高质量的低相位噪声超短脉冲铺平了道路。

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