首页> 外文期刊>Optoelectronics, IET >Q-switched thulium–ytterbium co-doped fibre laser using newly developed octagonal shaped inner cladding double-clad active fibre and multi-walled carbon nanotubes passive saturable absorber
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Q-switched thulium–ytterbium co-doped fibre laser using newly developed octagonal shaped inner cladding double-clad active fibre and multi-walled carbon nanotubes passive saturable absorber

机译:使用新开发的八边形内包层双包层有源光纤和多壁碳纳米管无源饱和吸收体的调Q th-–共掺杂光纤激光器

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摘要

Simple and low cost passive Q-switched thulium–ytterbium co-doped fibre lasers (TYFL) operating at 1977.5 nm is demonstrated using 905 nm multimode pumping, in conjunction with a multi-walled carbon nanotubes (MWCNTs) saturable absorber. It uses a new octagonal shaped double-clad thulium ytterbium co-doped fibre, manufactured using a modified chemical vapour deposition process and a solution doping. The Tm and Yb cladding absorptions of the fibre are 0.325 and 3.3 dB/m at 790 nm and 976 nm, respectively. The MWCNTs composite is prepared by mixing the MWCNTs homogeneous solution with a diluted polyvinyl alcohol polymer solution before it is left to dry at room temperature to produce thin film. The film is sandwiched between two fibre connectors and integrated into the laser cavity for Q-switching pulse generation. The repetition rate of the Q-switching pulse can be tuned from 18.8 to 50.6 kHz while the pulse width reduces from 8.6 to 1.0 µs as the pump power increases from 1.6 to 2.3 W. At the pump power of 2.1 W, the TYFL produces the maximum pulse energy of 5.7 nJ.
机译:使用905 nm多模泵浦和多壁碳纳米管(MWCNTs)饱和吸收剂,证明了在1977.5 nm处工作的简单且低成本的无源Q开关th-y共掺杂光纤激光器(TYFL)。它使用一种新型八边形双包层co th共掺杂光纤,该光纤采用改进的化学气相沉积工艺和溶液掺杂技术制造。光纤的Tm和Yb包层吸收在790 nm和976 nm处分别为0.325和3.3 dB / m。通过将MWCNTs均匀溶液与稀释的聚乙烯醇聚合物溶液混合,然后在室温下干燥以产生薄膜,来制备MWCNTs复合材料。薄膜夹在两个光纤连接器之间,并集成到激光腔中以产生Q转换脉冲。可以将Q开关脉冲的重复频率从18.8调谐到50.6 kHz,而随着泵浦功率从1.6 W增大到2.3 W,脉冲宽度从8.6 s减小到1.0 µs。在2.1 W的泵浦功率下,TYFL产生最大脉冲能量为5.7 nJ。

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