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Wavelength-tunable picosecond laser source based on filtering and amplifying broadband dissipative soliton pulse

作者:Jing Li, Chuncan Wang, Peng Wang, Pengtao Liu, Junhao Lan, Hefu Li · 发表于:Laser Physics · 年份:2021 · DOI:10.1088/1555-6611/ac3cc3 · 被引用次数:4 · 研究领域:Advanced Fiber Laser Technologies、Photonic Crystal and Fiber Optics、Laser-Matter Interactions and Applications

Abstract A method for obtaining picosecond pulse sources with continuously tunable central wavelengths is demonstrated numerically and experimentally. A dissipative soliton (DS) mode-locked erbium-doped fiber (EDF) laser based on the nonlinear polarization rotation provides the seed pulse with a flat-top spectral profile and a 55 nm spectral bandwidth. Then it is filtered by a wavelength-tunable super-Gaussian bandpass filter and amplified by two segments of EDFs with different doping concentrations. The output DS pulse from the EDF laser can be compressed from 5.532 ps to 0.291 ps by using a single-mode fiber (SMF-28e), while the pulse energy is about 1.6 nJ. Furthermore, the about 4 ps and 6.84 nJ pulses with continuously tunable central wavelengths ranging from 1535 to 1580 nm can be obtained by amplifying the spectrally filtered pulses. The tunable picosecond pulse source based on the extra-cavity filtering method is very useful for many practical applications because of its flexible wavelength control.