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拉伸渐变多模光纤作为可饱和吸收体用于掺铒光纤锁模激光器。

Stretched graded-index multimode optical fiber as a saturable absorber for erbium-doped fiber laser mode locking.

出版信息

Opt Lett. 2018 May 1;43(9):2078-2081. doi: 10.1364/OL.43.002078.

Abstract

A novel mode-locking method based on the nonlinear multimode interference in the stretched graded-index multimode optical fiber (GIMF) is proposed in this Letter. The simple device geometry, where the light is coupled in and out of the stretched GIMF via single-mode fibers, is demonstrated to exhibit the temporal intensity discrimination required for mode locking. The nonlinear saturable absorber (SA) characteristics of the device are controllable by simply adjusting the strength of the stretching applied. The modulation depth of the device, which consists of ∼23.5  cm GIMF, is tuned from 10.37% to 22.27%. Such a simple SA enables the wavelength-switchable mode-locking operation in a ring Er-doped fiber laser, and ultrafast pulses with a pulse width of 506 fs at 1572.5 nm and 416 fs at 1591.4 nm were generated. The versatility and simplicity of the SA device, together with the possibility of scaling the pulse energy, make it highly attractive in ultrafast photonics.

摘要

本文提出了一种基于拉伸渐变折射率多模光纤(GIMF)中非线性多模干涉的新型锁模方法。该器件采用单模光纤将光耦合进和耦合出拉伸 GIMF,其简单的器件结构表现出了实现锁模所需的时间强度分辨能力。通过简单地调整拉伸强度,即可控制器件的非线性可饱和吸收体(SA)特性。由约 23.5 cm GIMF 组成的器件的调制深度可从 10.37%调谐至 22.27%。这种简单的 SA 可实现环形掺铒光纤激光器中的波长可切换锁模操作,并在 1572.5nm 处产生了脉宽为 506fs 的超快脉冲,在 1591.4nm 处产生了 416fs 的超快脉冲。SA 器件的多功能性和简单性,以及增加脉冲能量的可能性,使其在超快光子学中具有很高的吸引力。

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