All-Fiber Supercontinuum Source Pumped by Noise-Like Pulse Mode Locked Laser

We demonstrate flat supercontinuum generation in a piece of highly nonlinear fiber pumped with a stable noise-like pulse mode-locked fiber laser. The compact all-fiber laser realizes mode locking based on a nonlinear amplifying loop mirror and emits noise-like mode-locked pulse with high peak power...

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Veröffentlicht in:IEEE photonics technology letters 2019-08, Vol.31 (15), p.1225-1228
Hauptverfasser: Luo, Xing, Tuan, Tong Hoang, Saini, Than Singh, Nguyen, Hoa Phuoc Trung, Suzuki, Takenobu, Ohishi, Yasutake
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container_end_page 1228
container_issue 15
container_start_page 1225
container_title IEEE photonics technology letters
container_volume 31
creator Luo, Xing
Tuan, Tong Hoang
Saini, Than Singh
Nguyen, Hoa Phuoc Trung
Suzuki, Takenobu
Ohishi, Yasutake
description We demonstrate flat supercontinuum generation in a piece of highly nonlinear fiber pumped with a stable noise-like pulse mode-locked fiber laser. The compact all-fiber laser realizes mode locking based on a nonlinear amplifying loop mirror and emits noise-like mode-locked pulse with high peak power and high average power. The output pulse has a 3-dB bandwidth of ~35.8 nm with the central wavelength of ~1581 nm. Pumping a 102-m highly nonlinear fiber with the noise-like pulse mode-locked fiber laser directly, a flat and weak residual-pump supercontinuum spanning from ~1370 to ~2200 nm is generated. The spectrum within 1865 to 2200 nm contains more than 45% of the whole energy of the supercontinuum.
doi_str_mv 10.1109/LPT.2019.2922437
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source IEEE Electronic Library (IEL)
subjects Fiber lasers
Laser excitation
Laser mode locking
Lasers
Noise
nonlinear optics
Optical fiber amplifiers
Optical fiber dispersion
Optical fiber polarization
Pump lasers
supercontinuum generation
title All-Fiber Supercontinuum Source Pumped by Noise-Like Pulse Mode Locked Laser
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