研究目的
To demonstrate a carbon nanotube mode-locked thulium fiber laser with widely tunable wavelength, spectral bandwidth, and pulse duration, and to study the spectral evolution of the mode-locked laser in the presence of a tunable filter.
研究成果
The study successfully demonstrated a carbon nanotube mode-locked thulium fiber laser with a record-wide wavelength tuning range of 300 nm and adjustable pulse duration from 0.9 ps to 6.4 ps. The research provided valuable insights into the interplay between soliton and dispersive waves in the presence of a tunable filter, contributing to a better understanding of mode-locking dynamics in thulium-doped fiber lasers.
研究不足
The study's limitations include the sensitivity of the fiber birefringence to external perturbations, which could affect the stability and repeatability of wavelength tuning operations. Additionally, the filter's insertion loss increases as its bandwidth is reduced, potentially impacting the laser's efficiency.
1:Experimental Design and Method Selection:
The experiment utilized a custom-made tunable filter to achieve wavelength and pulse duration tuning in a carbon nanotube mode-locked thulium fiber laser. The study involved both experimental and numerical analysis of the laser's spectral evolution.
2:Sample Selection and Data Sources:
The laser used a segment of PM TDF (PM-TSF-9/125, Nufern) as the gain medium and a carbon nanotube-carboxymethycellulose (CNT-CMC) polymer composite film as the saturable absorber.
3:List of Experimental Equipment and Materials:
Equipment included a 1550 nm laser diode, a commercial erbium-doped fiber amplifier (EDFA), a polarization-maintaining 1550/2000 nm fiber wavelength division multiplexer (WDM), a dielectric mirror, and a homemade tunable filter. Materials included PM TDF and CNT-CMC film.
4:Experimental Procedures and Operational Workflow:
The laser's output characteristics were adjusted by changing the filter's bandwidth and position. The spectral and temporal properties of the output were measured using an optical spectrum analyzer and a mid-infrared autocorrelator.
5:Data Analysis Methods:
The spectral evolution and pulse dynamics were analyzed both experimentally and through numerical simulation to understand the effects of the tunable filter on the mode-locking dynamics.
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optical spectrum analyzer
AQ6375
Yokogawa
Measures the output spectrum of the laser.
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power meter
S148C
Thorlabs
Measures the output power of the laser.
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laser diode
1550 nm
Used as the pump source for the thulium fiber laser.
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erbium-doped fiber amplifier
EDFA
Amplifies the 1550 nm pump laser to 1.5 W.
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polarization-maintaining fiber wavelength division multiplexer
1550/2000 nm
Couples the 1550 nm pump into the cavity.
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PM TDF
PM-TSF-9/125
Nufern
Used as the gain medium in the laser.
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mid-infrared autocorrelator
FR-103XL
Femtochrom
Measures the pulse duration of the laser.
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high speed photodiode
EOT-5000
Used to measure the output pulse traces and radio frequency spectra.
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