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首页> 外文期刊>The Journal of Engineering >Q-switched thulium-doped fibre laser operating at 1900 nm using multi-walled carbon nanotubes saturable absorber
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Q-switched thulium-doped fibre laser operating at 1900 nm using multi-walled carbon nanotubes saturable absorber

机译:使用多壁碳纳米管可饱和吸收器在1900 nm下工作的Q开关掺-光纤激光器

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Simple, low-cost and stable passive Q-switched thulium-doped fibre lasers (TDFLs) operating at 1892.4 and 1910.8 nm are demonstrated using 802 and 1552 nm pumping schemes, respectively, in conjunction with a multi-walled carbon nanotubes (MWCNTs) saturable absorber (SA). The MWCNTs composite is prepared by mixing the MWCNTs homogeneous solution into a dilute polyvinyl alcohol (PVA) polymer solution before it is left to dry at room temperature to produce thin film. Then the film is sandwiched between two FC/PC fibre connectors and integrated into the laser cavity for Q-switching pulse generation. The pulse repetition rate of the TDFL configured with 802 nm pump can be tuned from 3.8 to 4.6 kHz, whereas the corresponding pulse width reduces from 22.1 to 18.3 ??s as the pump power is increased from 187.3 to 194.2 mW. On the other hand, with 1552 nm pumping, the TDFL generates optical pulse train with a repetition rate ranging from 13.1 to 21.7 kHz with a pulse width of 11.5a??7.9 ??s when the pump power is tuned from 302.2 to 382.1 mW. A higher performance Q-switched TDFL is expected to be achieved with the optimisation of the MWCNT-SA saturable absorber and laser cavity.
机译:分别使用802和1552 nm泵浦方案以及可饱和的多壁碳纳米管(MWCNT),论证了工作在1892.4和1910.8 nm的简单,低成本和稳定的无源Q开关掺th光纤激光器(TDFL)。吸收器(SA)。通过将MWCNTs均匀溶液混合到稀聚乙烯醇(PVA)聚合物溶液中,然后在室温下干燥以产生薄膜,来制备MWCNTs复合材料。然后将膜夹在两个FC / PC光纤连接器之间,并集成到激光腔中以产生Q转换脉冲。可以将配置有802 nm泵浦的TDFL的脉冲重复频率从3.8 kHz调整到4.6 kHz,而随着泵浦功率从187.3 mW增加到194.2 mW,相应的脉冲宽度从22.1 s减少到18.3 s。另一方面,当泵浦功率从302.2调至382.1 mW时,在泵浦为1552 nm时,TDFL产生的光脉冲串的重复频率为13.1至21.7 kHz,脉冲宽度为11.5a≤7.9 s。 。通过优化MWCNT-SA饱和吸收器和激光腔,有望实现更高性能的Q开关TDFL。

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