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Passively Q-switched of EDFL employing multi-walled carbon nanotubes with diameter less than 8 nm as saturable absorber

机译:被动地Q切换的EDFL采用直径小于8nm的多壁碳纳米管,如饱和吸收器

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The paper demonstrates passively Q-switched erbium-doped fiber laser implementing multiwalled carbon nanotubes (MWCNTs) based saturable absorber. The paper is the first to report the use of the MWCNTs with diameter less than 8 nm as typically, the diameter used is 10 to 20 nm. The MWCNTs is incorporated with water soluble host polymer, polyvinyl alcohol (PVA) to produce a MWCNTs polymer composite thin film which is then sandwiched between two fiber connectors. The fabricated SA is employed in the laser experimental setup in ring cavity. The Q-switching regime started at threshold pump power of 103 mW and increasable to 215 mW. The stable pulse train from 41.6 kHz to 76.92 kHz with maximum average output power and pulse energy of 0.17 mW and 3.39 nJ are produced. The shortest pulse width of 1.9 μs is obtained in the proposed experimental work, making it the lowest pulse width ever reported using MWCNTs-based saturable absorber.
机译:本文演示了被动Q开关掺铒光纤激光器,实现了基于多壁的碳纳米管(MWCNT)的可饱和吸收器。本文是第一个报告使用直径小于8nm的MWCNT,通常使用的直径为10至20nm。 MWCNT与水溶性主体聚合物,聚乙烯醇(PVA)掺入,以产生MWCNTS聚合物复合薄膜,然后夹在两个纤维连接器之间。制造的SA在环腔中的激光实验装置中使用。 Q切换制度以103mW的阈值泵功率启动,可达215兆瓦。产生的稳定脉冲训练从41.6 kHz到76.92 kHz,最大平均输出功率和脉冲能量为0.17 mW和3.39 nj。在所提出的实验工作中获得了1.9μs的最短脉冲宽度,使其具有基于MWCNTS的可饱和吸收器的最低脉冲宽度。

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