Title :
Topological-Insulator Passively Q-Switched Double-Clad Fiber Laser at 2
m Wavelength
Author :
Zhengqian Luo ; Chun Liu ; Yizhong Huang ; Duanduan Wu ; Jianyu Wu ; Huiying Xu ; Zhiping Cai ; Zhiqin Lin ; Liping Sun ; Jian Weng
Author_Institution :
Dept. of Electron. Eng., Xiamen Univ., Xiamen, China
Abstract :
In this paper, Topological insulator (TI) Bi2Se3 as a saturable absorber (SA) is exploited to Q-switch fiber lasers at 2 μm wavelength for the first time. Few-layer TI:Bi 2Se 3 nanosheets in CS-HAc solution are prepared by the liquid-phase exfoliation method, and the thin 2-D structure with the thickness of 3-5 layers is well characterized. The open-aperture Z-scan experiment shows that the few-layer TI:Bi 2Se 3 has the saturable optical intensity of 41 MW/cm 2 at 800 nm and the modulation depth of 3.7%. The optical deposition technique is used to efficiently assemble the TI:Bi 2Se 3 nanosheets in the solution onto a fiber ferrule, therefore constructing a fiber-compatible TI-based SA (FC-TISA). By further inserting the FC-TISA into a diode-pumped Tm 3+-doped double-clad fiber laser (TM-DCFL), stable Q-switching operation at 1.98 μm is successfully achieved with the shortest pulse width of 4.18 μs and the tunable repetition rate from 8.4 to 26.8 kHz. In particular, the TM-DCFL can deliver large-energy Q-switched pulses with the pulse energy as high as 313 nJ (corresponding to average output power of 8.4 mW). Our results suggest that TI-based SA is suitable for pulsed laser operation in the eye-safe region of 2 μm, and potentially develops as an ultra-broadband photonics device.
Keywords :
Q-switching; bismuth compounds; fibre lasers; laser tuning; nanophotonics; nanostructured materials; optical fibre cladding; optical modulation; optical pumping; optical saturable absorption; thulium; topological insulators; Bi2Se3; CS-HAc solution; Tm3+; diode-pumped thulium-doped double-clad fiber laser; energy 313 nJ; fiber ferrule; frequency 8.4 kHz to 26.8 kHz; laser tuning; liquid-phase exfoliation method; modulation depth; nanosheet layer; open-aperture Z-scan experiment; optical deposition technique; power 8.4 mW; pulse width; saturable absorber; time 4.18 mus; topological-insulator passively Q-switched double-clad fiber laser; ultrabroadband photonics device; wavelength 1.98 mum; wavelength 2 mum; wavelength 800 nm; Laser excitation; Nonlinear optics; Optical device fabrication; Optical fibers; Optical pulses; 2 $mu$m wavelength; Fiber lasers; Q-switching; large pulse energy; topological insulator;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2014.2305834