DocumentCode :
104425
Title :
1-, 1.5-, and 2-μm Fiber Lasers Q-Switched by a Broadband Few-Layer MoS2 Saturable Absorber
Author :
Luo, Zhengqian ; Huang, Yi-Pai ; Zhong, Maiying ; Li, Yuhua ; Wu, Junyong ; Xu, Benwei ; Xu, Hao ; Cai, Zhihua ; Peng, Junbiao ; Weng, Jianshu
Author_Institution :
Dept. of Electron. Eng., Xiamen Univ., Xiamen, China
Volume :
32
Issue :
24
fYear :
2014
fDate :
Dec.15, 15 2014
Firstpage :
4679
Lastpage :
4686
Abstract :
We propose and demonstrate 1, 1.5, and 2 μm passively Q-switched fiber lasers by exploiting a few-layer Molybdenum sulfide (MoS2) polymer composite as broadband saturable absorber (SA), respectively. The few-layer MoS2 nanosheets are prepared by the liquid-phase exfoliation method, and are composited with polyvinyl alcohol (PVA). The PVA-MoS2 film is sandwiched between two fiber ferrules to form the fiber-compatible SA. The few-layer MoS2 not only shows good transparency from ultraviolet to mid-infrared spectral region, but also possesses the nonlinear saturable absorption. The modulation depth and saturation optical intensity of the PVA-MoS2 film are measured to be 1.6% and 13 MW/cm2 at 1566 nm by the balanced twin-detector technique, respectively. By further inserting the filmy PVA-MoS2 SA into the cavities of Yb-, Er- and Tm-doped fiber lasers, we achieve stable Q-switching operations at 1.06, 1.56, and 2.03 μm, respectively. The output characteristics of the Q-switched pulses at the three wavelengths have been investigated, respectively. The MoS2-based Q-switching enables the large pulse energy of ~1 μJ with a pulse width of 1.76 μs. This is, to the best of our knowledge, the first demonstration of MoS2 -based Q-switched fiber lasers in a wide wavelength range (from 1 to 2 μm). Our results experimentally confirm that the new-type 2-D material, few-layer MoS2, is a promising broadband SA to Q-switch fiber lasers covering all major wavelengths from near- to mid-infrared region.
Keywords :
Q-switching; composite materials; erbium; fibre lasers; laser beams; laser cavity resonators; molybdenum compounds; optical modulation; optical multilayers; optical polymers; optical saturable absorption; thulium; ytterbium; 2-D material; Er-doped fiber laser; MoS2; MoS2-based Q-switched fiber laser; PVA-MoS2 SA; PVA-MoS2 film; Q-switched pulse output characteristics; Tm-doped fiber laser; Yb-doped fiber laser; balanced twin-detector technique; broadband few-layer MoS2 saturable absorber; few-layer MoS2 nanosheets; few-layer molybdenum sulfide polymer composite; fiber ferrules; fiber-compatible SA; laser cavities; liquid-phase exfoliation method; mid-infrared region; mid-infrared spectral region; modulation depth; near-infrared region; nonlinear saturable absorption; passively Q-switched fiber laser; polyvinyl alcohol; pulse energy; pulse width; saturation optical intensity; stable Q-switching operations; time 1.76 mus; transparency; ultraviolet spectral region; wavelength 1.06 mum; wavelength 1.56 mum; wavelength 2.03 mum; Absorption; Broadband communication; Fiber lasers; Measurement by laser beam; Optical fibers; Ultrafast optics; Er-doped fiber; MoS2 saturable absorber; Q-switched fiber lasers; Tm-doped fiber; Yb-doped fiber;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2362147
Filename :
6920007
Link To Document :
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