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炭化锁模掺铒光纤激光器的自幅度调制和自相位调制

Self-amplitude and self-phase modulation of the charcoal mode-locked erbium-doped fiber lasers.

作者信息

Lin Yung-Hsiang, Lo Jui-Yung, Tseng Wei-Hsuan, Wu Chih-I, Lin Gong-Ru

出版信息

Opt Express. 2013 Oct 21;21(21):25184-96. doi: 10.1364/OE.21.025184.

Abstract

With the intra-cavity nano-scale charcoal powder based saturable absorber, the 455-fs passive mode-locking of an L-band erbium-doped fiber laser (EDFL) is demonstrated. The size reduction of charcoal nano-particle is implemented with a simple imprinting-exfoliation-wiping method, which assists to increase the transmittance up to 0.91 with corresponding modulation depth of 26%. By detuning the power gain from 17 to 21 dB and cavity dispersion from -0.004 to -0.156 ps² of the EDFL, the shortening of mode-locked pulsewidth from picosecond to sub-picosecond by the transformation of the pulse forming mechanism from self-amplitude modulation (SAM) to the combining effect of self-phase modulation (SPM) and group delay dispersion (GDD) is observed. A narrower spectrum with 3-dB linewidth of 1.83-nm is in the SAM case, whereas the spectral linewidth broadens to 5.86 nm with significant Kelly sideband pair can be observed if the EDFL enters into the SPM regime. The mode-locking mechanism transferred from SAM to SPM/GDD dominates the pulse shortening procedure in the EDFL, whereas the intrinsic defects in charcoal nano-particle only affect the pulse formation at initial stage. The minor role of the saturable absorber played in the EDFL cavity with strongest SPM is observed.

摘要

利用腔内基于纳米级炭粉的可饱和吸收体,实现了L波段掺铒光纤激光器(EDFL)的455 fs被动锁模。通过一种简单的压印 - 剥离 - 擦拭方法实现了炭纳米颗粒的尺寸减小,这有助于将透过率提高到0.91,相应的调制深度为26%。通过调节EDFL的功率增益从17 dB到21 dB以及腔色散从 -0.004 ps²到 -0.156 ps²,观察到锁模脉冲宽度从皮秒缩短到亚皮秒,这是由于脉冲形成机制从自振幅调制(SAM)转变为自相位调制(SPM)和群延迟色散(GDD)的组合效应。在SAM情况下,光谱具有较窄的3 dB线宽,为1.83 nm,而当EDFL进入SPM区域时,可以观察到光谱线宽拓宽到5.86 nm,并伴有明显的凯利边带对。锁模机制从SAM转变为SPM/GDD主导了EDFL中的脉冲缩短过程,而炭纳米颗粒中的固有缺陷仅在初始阶段影响脉冲形成。观察到可饱和吸收体在具有最强SPM的EDFL腔内所起的次要作用。

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