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Tunable SESAM-Based Mode-Locked Soliton Fiber Laser in Linear Cavity by Axial-Strain Applied to an FBG

机译:基于轴向应变的线性腔中基于SESAM的可调谐锁模孤子光纤激光器在FBG上的应用

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摘要

A self-started stable tunable mode-locked soliton fiber laser in a linear cavity structure composed by commercial passive elements is presented in this paper. It is based on the combination of an erbium-doped fiber as the active medium, and a saturated fiber Bragg grating (FBG) as a partial mirror of the cavity. The other side of the cavity consists of a semiconductor saturable absorber mirror acting also as the mode-locking device. The central wavelength of the FBG is selected by the application of axial strain giving rise to a tunable soliton over 8.6 nm on the C band with a variable spacing of 0.01 nm. The laser delivers 18.9 ps long pulses with a 0.14 nm bandwidth, an 8.2 MHz repetition rate, a pulse energy of 89 pJ, and a peak power of 4.71 W.
机译:本文提出了一种由商用无源元件组成的线性腔结构中的自启动稳定可调谐锁模孤子光纤激光器。它基于掺as光纤作为活性介质和饱和光纤布拉格光栅(FBG)作为腔体的部分反射镜的组合。空腔的另一侧由半导体可饱和吸收镜构成,该吸收镜也用作锁模装置。 FBG的中心波长是通过施加轴向应变来选择的,该轴向应变会在C波段上产生8.6 nm以上的可调孤子,其可变间距为0.01 nm。激光器发出的长脉冲为18.9 ps,带宽为0.14 nm,重复频率为8.2 MHz,脉冲能量为89 pJ,峰值功率为4.71W。

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