Wavelength-tunable 10 GHz actively harmonic mode-locked fiber laser based on semiconductor optical amplifier

被引:0
|
作者
Yan Mao
Xinglin Tong
Zhiqiang Wang
Li Zhan
Pan Hu
Liang Chen
机构
[1] Wuhan University of Technology,National Engineering Laboratory for Fiber Optic Sensing Technology, Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Ministry of Education)
[2] Shanghai Jiao Tong University,Department of Physics and Astronomy, Key Laboratory for Laser Plasmas (Ministry of Education), State Key Laboratory of Advanced Optical Communication Systems and Networks
来源
Applied Physics B | 2015年 / 121卷
关键词
Fiber Laser; Pulse Train; Semiconductor Optical Amplifier; Ring Cavity; High Repetition Rate;
D O I
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中图分类号
学科分类号
摘要
We demonstrate a widely wavelength-tunable actively mode-locked fiber laser based on semiconductor optical amplifier. Beneficiating from the actively mode-locking operation and the wavelength-tunable characteristics of a Fabry–Perot filter, different harmonic mode-locking orders, from the fundamental mode-locking order (18.9 MHz) to the 520th order (9.832 GHz), can be easily achieved. The spectral bandwidth corresponding to the fundamental repetition rate is 0.12 nm with the pulse duration of 9.8 ns, leading to the TBP value of 146, which is about 460 times the transform-limited value for soliton pulse. The highest repetition rate of the mode-locked pulses we obtained is 9.832 GHz, with a signal-to-noise ratio up to 50 dB. The theoretical transform-limited pulse duration is 21 ps. Meanwhile, the central wavelength can be continuously tuned over 43.4 nm range (1522.8–1566.2 nm). The higher repetition rate and the widely tuning wavelength range make the fiber laser to own great potential and promising prospects in areas such as optical communication and photonic analog-to-digital conversion (ADC).
引用
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页码:517 / 521
页数:4
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