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Performance of passively Q-switched ring erbium-doped fiber laser using a multiwalled carbon nanotubes polyethylene oxide (PEO) polymer composite-based saturable absorber

机译:使用多壁碳纳米管聚环氧乙烷(PEO)聚合物复合材料的可饱和吸收体的被动调Q环掺er光纤激光器的性能

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The aim of this article is to report the fabrication and characterization of dispersed multiwalled carbon nanotubes (MWCNTs) polymer composites and use them as passive SAs in Q-switched Erbium-doped fiber (EDF) for ultrafast laser generation at 1.5-mu m region. CNT polymer composites were fabricated into thin films by homogenizing different concentrations (1.8, 4.8, and 10.1 wt. %) of MWCNTs with host polymers polyethylene oxide. The fabricated thin film was then deposited between two fiber connectors as passive SA and incorporated into fiber laser's ring oscillator. The EDFL exhibited a central wavelength of 1560.5 nm when pump power is fixed at 42 mW. The Q-switching operation starts at the lowest threshold of 39.3 mW for all the three different SA concentrations. For 1.8 wt. % MWCNTs concentration, the pulse repetition rate of the Q-switched EDFL is started from 35.6 kHz, while for 4.8 wt. % and 10.1 wt. %, the pulse repetition rate started at 78.5 and 66.1 kHz, respectively. At the MWCNTs concentration of 1.8 wt. %, the pulse energy of the Q-switched EDFL increases from 7.9 to 24.7 nJ as the pump power increases from 39.3 to 58.8 mW. (c) 2015 Wiley Periodicals, Inc. Microwave Opt Technol Lett 57:1897-1901, 2015
机译:本文的目的是报告分散的多壁碳纳米管(MWCNTs)聚合物复合材料的制备和表征,并将其用作调Q掺Er光纤(EDF)中的无源SA,以在1.5微米范围内产生超快激光。通过用主体聚合物聚环氧乙烷均化不同浓度(1.8、4.8和10.1 wt。%)的MWCNT,将CNT聚合物复合材料制成薄膜。然后,将制成的薄膜作为无源SA沉积在两个光纤连接器之间,并结合到光纤激光器的环形振荡器中。当泵浦功率固定为42 mW时,EDFL的中心波长为1560.5 nm。对于所有三种不同的SA浓度,Q开关操作均从最低阈值39.3 mW开始。对于1.8 wt。 %的MWCNTs浓度,调Q的EDFL的脉冲重复率从35.6kHz开始,而对于4.8wt。%。 %和10.1 wt。 %,脉冲重复率分别开始于78.5和66.1 kHz。在MWCNTs浓度为1.8重量%时。当泵浦功率从39.3 mW增加到59.3 mW时,Q开关EDFL的脉冲能量从7.9增加到24.7 nJ。 (c)2015年,Wiley Periodicals,Inc.微波技术通讯Lett 57:1897-1901,2015年

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