Photonics Research, Volume. 3, Issue 3, A79(2015)
Nonlinear optical absorption of few-layer molybdenum diselenide (MoSe2) for passively mode-locked soliton fiber laser [Invited]
Fig. 1. Characterization of few-layer
Fig. 2. Balanced twin-detector measurement system for measuring the NLO absorption of the fiber-compatible
Fig. 3. Measured nonlinear absorption characteristics of the few-layer
Fig. 4. Experiment setup of the proposed EDFL passively mode-locked by the few-layer
Fig. 5. (a) Optical spectrum and (b) typical oscilloscope trace of the passive
Fig. 6. (a) Mode-locked optical spectrum and (b) mode-locked pulse trains at the pump power of 33.4 mW.
Fig. 7. (a) RF spectrum of the mode-locked pulses at the fundamental RF peak. (b) Broadband RF spectrum with a frequency span of 600 MHz. The autocorrelation traces of the mode-locked pulses with the (c) narrow and (d) broad scanning range are also shown.
Fig. 8. Average output power as a function of the pump power when (a) turning on and (b) turning off the pump power.
Fig. 9. Stability measurement of soliton mode locking by repeatedly scanning the output optical spectra at 10-min intervals.
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Zhengqian Luo, Yingyue Li, Min Zhong, Yizhong Huang, Xiaojiao Wan, Jian Peng, Jian Weng, "Nonlinear optical absorption of few-layer molybdenum diselenide (MoSe2) for passively mode-locked soliton fiber laser [Invited]," Photonics Res. 3, A79 (2015)
Special Issue: PHOTONICS BASED ON TWO DIMENSIONAL MATERIALS
Received: Jan. 6, 2015
Accepted: Mar. 12, 2015
Published Online: Jan. 23, 2019
The Author Email: Zhengqian Luo (zqluo@xmu.edu.cn)