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Widely Wavelength-Swept Single-Longitudinal-Mode Fiber Laser With Ultra-Narrow Linewidth in C plus L-Band

Da Wei, Ting Feng, Weiwei Sun, Fengping Yan, X. Steve Yao

IEEE Photonics Journal(2022)

Cited 7|Views5
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Abstract
This study proposes and demonstrates a widely wavelength-swept single-longitudinal-mode (SLM) erbium-doped fiber laser (EDFL) enabled by a dual-coupler-ring based compound-cavity (DCR-CC) filter, a fiber Fabry-Perot tunable filter (FFP-TF) and a C+L-band erbium-doped fiber amplifier (EDFA). Moreover, it develops a novel methodology utilizing the signal-flow graph combined with the matrix algebra to analyze the DCR-CC filter and obtain its essential design parameters for SLM selection of the EDFL. The C+L-band EDFA is constructed to provide a gain range >90 nm. On the other hand, it demonstrates that, under a sweep-rate <= 100 Hz, a lasing wavelength-swept range >87 nm is obtained, the SLM operation is permanently guaranteed for every instantaneous lasing wavelength. Furthermore, the instantaneous lasing parameters of an optical signal-to-noise ratio >= 66 dB, a relative intensity noise <=-153.33 dB/Hz@>= 3 MHz, a linewidth <= 625 Hz and a power fluctuation <= 0.704 dB are achieved. The distinguished performance of the proposed fiber laser enables it to have a significant potential for application in optical frequency domain reflectometry, spectroscopy and Lidar system.
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Key words
Optical fiber filters,Erbium-doped fiber lasers,Optical fiber amplifiers,Erbium-doped fiber amplifiers,Optical fiber polarization,Optical fiber communication,Resonator filters,Fiber laser,wavelength-swept laser,narrow linewidth,compound-cavity filter,signal-flow-graph
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