DocumentCode :
48056
Title :
Passively Q-Switched 1.89-μm Fiber Laser Using a Bulk-Structured Bi2Te3 Topological Insulator
Author :
Junsu Lee ; Minwan Jung ; Joonhoi Koo ; Cheolhwan Chi ; Ju Han Lee
Author_Institution :
Sch. of Electr. & Comput. Eng., Univ. of Seoul, Seoul, South Korea
Volume :
21
Issue :
1
fYear :
2015
fDate :
Jan.-Feb. 2015
Firstpage :
31
Lastpage :
36
Abstract :
We experimentally demonstrate that a bulk-structured Bi2Te3 topological insulator (TI) film deposited on a side-polished fiber can act as an effective Q-switch for a 1.89-μm laser. Our bulk-structured Bi2Te3 TI film with a thickness of ~31 μm, was prepared using a mechanical exfoliation method, and the fabricated film was transferred onto a side-polished SM2000 fiber to form a fiberized saturable absorber based on evanescent field interaction. By incorporating the saturable absorber into a thulium (Tm)-holmium (Ho) co-doped fiber-based ring cavity, it is shown that Q-switched pulses with a minimum temporal width of ~1.71 μs can readily be produced at a wavelength of 1.89 μm. The output pulse repetition rate was tunable from ~35 to ~60 kHz depending on the pump power. The maximum output pulse energy was ~11.54 nJ at a pump power of 250 mW. The output performance of our laser is compared to that of the 1.98-μm Q-switched fiber laser based on a nanosheet-based Bi2Se3 TI demonstrated previously by Luo et al.
Keywords :
Q-switching; bismuth compounds; fibre lasers; holmium; laser cavity resonators; laser tuning; optical fabrication; optical pulse generation; optical pumping; optical saturable absorption; thulium; topological insulators; Bi2Te3:Tm,Ho; bulk-structured topological insulator; evanescent field interaction; fiber-based ring cavity; fiberized saturable absorber; mechanical exfoliation method; nanosheet-based Bi2Se3 TI; output pulse energy; output pulse repetition rate; passively Q-switched fiber laser; power 250 mW; pump power; side-polished SM2000 fiber; side-polished fiber; wavelength 1.89 mum; Fiber lasers; Films; Laser mode locking; Optical fiber communication; Optical fiber polarization; Pump lasers; 2 ??m wavelength; Fiber lasers; Q-switching; topological insulator;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2014.2329934
Filename :
6832457
Link To Document :
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