Tunable mode-locked Tm-doped fiber laser based upon cross-phase modulation

Author:

Huang Shiting,Zheng Shukai,Wang JiachenORCID,Chen Hongyi,Dong Fanlong1,Yu Linpeng,Luo Xing,Guo Xin,Yan PeiguangORCID,Wang JinzhangORCID,Lei Yaohu,Liu Wenjun2,Lue Qitao3,Guo ChunyuORCID,Ruan Shuangchen1ORCID

Affiliation:

1. Shenzhen Technology University

2. Beijing University of Posts and Telecommunications

3. Han’s Laser Technology Industry Group Co., Ltd.

Abstract

We demonstrate the generation of soliton and dissipative soliton in an ultrafast thulium (Tm) doped fiber laser based upon cross-phase modulation (XPM) induced mode-locking. The mode-locking is realized by periodically modulating the 2-µm signal through XPM that is activated by an injected 1.5-µm pulsed laser. Such a mechanism enables the laser to be mode-locked in various operation regimes without any real or artificial saturable absorbers. Thanks to the XPM pulling effect, the wavelength of the Tm-doped fiber laser can be tuned by adjusting the repetition frequency of the 1.5-µm pulsed laser. The maximum tuning ranges achieved in this work for the soliton and dissipative soliton regimes are respectively 11 nm and 15 nm. The outcomes of this work not only provide a continuously and controllably wavelength-tunable ultrafast laser but also offer a passively synchronized dual-color fiber laser system, which is promised for many important applications such as Raman spectroscopy, nonlinear frequency conversion systems, and multi-color pump-probe systems.

Funder

National Natural Science Foundation of China

Basic and Applied Basic Research Foundation of Guangdong Province

Shenzhen Science and Technology Innovation Program

Beijing Natural Science Foundation

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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