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Passively mode-locked C-band fiber laser employing carbon nanotubes as saturable absorbers

delete2025-01-01
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PRE
AI
L
Luo, Wenfeng
Z
Zhang, Tingting
L
Li, Xiaohui *
L
Lv, Shuyuan
D
Duan, Duoduo
DOI:10.15302/frontphys.2025.032205delete
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Abstract

Abstract

En 中文
Passively mode-locked fiber lasers find extensive applications in communications, ultrafast science, and materials processing. In this study, carbon nanotubes (CNTs) were employed as saturable absorbers in a passively mode-locked fiber laser. We systematically explored the influence of different dispersion characteristics on the output of mode-locked pulses by precisely adjusting the cavity length. The experimental results clearly indicate that when the dispersion is altered from -0.25 to -0.12 ps2, the pulse width can be effectively reduced from 858 to 645 fs. In addition, we comparatively analyzed the effects of CNT-SA aqueous solution and CNTPVA-SA on the pulse output of the fiber laser. It was discovered that the morphology of the material exerts a significant impact on the mode-locking threshold, pulse width, and stability of the laser. This discovery offers a crucial theoretical foundation for future material selection in the field of passively mode-locked fiber lasers, facilitating more optimized designs and enhanced performance in related applications.
Keywords:
laser
saturable absorber
doped fiber
carbon nanotubes

Journal

Frontiers of Physics cover
Frontiers of Physics
IF:
5.3
Papers:
1.4K
Citations:
3.7K

Organization

X
xian univ posts telecommun
Scholars:
308
Papers: 124
Citations: 0
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