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基于倏逝场与碳纳米管饱和吸收体相互作用的全光纤掺铒耗散孤子激光器。

All-fiber Er-doped dissipative soliton laser based on evanescent field interaction with carbon nanotube saturable absorber.

作者信息

Im Ju Hee, Choi Sun Young, Rotermund Fabian, Yeom Dong-Il

机构信息

Division of Energy Systems Research, Ajou University, 443-749 Suwon, South Korea.

出版信息

Opt Express. 2010 Oct 11;18(21):22141-6. doi: 10.1364/OE.18.022141.

Abstract

We report on an Er-doped fiber pulse laser at large net normal dispersion cavity by employing a dispersion compensating fiber in combination with a single-walled carbon nanotube (SWCNT) saturable absorber. A SWCNT/polymer composite film uniformly spin-coated on the side-polished fiber is prepared for robust and efficient nonlinear interaction with evanescent fields in the waveguide expecting increase of optical and thermal damage threshold compared to previously reported direct coating of SWCNTs on fiber ferrules. The fabricated dissipative soliton fiber laser exhibits high average output power of 55.6 mW, corresponding to pulse energy about 2.35 nJ. Highly chirped 5.8 ps pulses are generated with a spectral bandwidth of 13.9 nm and compressed down to 226 fs using additional length of conventional optical fiber at extra-cavity.

摘要

我们报道了一种通过将色散补偿光纤与单壁碳纳米管(SWCNT)可饱和吸收体相结合,在大净正常色散腔内实现的掺铒光纤脉冲激光器。制备了一种均匀旋涂在侧面抛光光纤上的SWCNT/聚合物复合薄膜,以实现与波导中倏逝场的稳健且高效的非线性相互作用,预计与先前报道的将SWCNT直接涂覆在光纤插头上相比,其光学和热损伤阈值会有所提高。所制备的耗散孤子光纤激光器展现出55.6 mW的高平均输出功率,对应脉冲能量约为2.35 nJ。产生了具有13.9 nm光谱带宽的高啁啾5.8 ps脉冲,并利用腔外额外长度的传统光纤将其压缩至226 fs。

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