Infrared and Laser Engineering, Volume. 52, Issue 6, 20230334(2023)
Fiber laser from interdisciplinary perspective: review and prospect (invited)
Fig. 3. Illustration of fiber structure. (a) Confined-doped fiber; (b) Single-trench fiber; (c) Polarization-maintaining fiber; (d) Tapered fiber
Fig. 6. (a) Schematic diagram of pattern decomposition principle based on deep learning; (b) Application example diagram of pattern decomposition based on deep learning[69]
Fig. 7. (a) Pulsed Yb-doped fiber laser device based on black phosphorus; The results of pulse long time stability test: (b) Change of spectrum; (c) Fluctuation of output power; (d) Change of pulse width and repetition frequency[87]
Fig. 8. Output pulse performance of ultrafast pulse fiber laser based on the CsCu2I3-SA. (a) Recorded RF spectrum within the 500 MHz range; (b) RF spectrum within the 50 MHz range; (c) Central wavelength and 3 dB bandwidth and (d) repetition rate and pulse train interval as a function of pump power; The changes of (e) the central wavelength and 3 dB bandwidth, and (f) the output power and the pulse train interval within 164 days under the same pump power
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Pu Zhou, Min Jiang, Hanshuo Wu, Yu Deng, Hongxiang Chang, Liangjin Huang, Jian Wu, Jiangming Xu, Xiaolin Wang, Jinyong Leng. Fiber laser from interdisciplinary perspective: review and prospect (invited)[J]. Infrared and Laser Engineering, 2023, 52(6): 20230334
Category: Invited paper
Received: May. 22, 2023
Accepted: --
Published Online: Jul. 26, 2023
The Author Email: Wu Jian (wujian15203@163.com)