Spatiotemporal mode-locked fiber laser based on dual-resonance coupling long-period fiber grating

Author:

Xing Dengke,Feng Mao,Liu CongcongORCID,He Jiangyong,Chang Kun,Li Jin,Wang PanORCID,Liu Yange,Wang Zhi

Abstract

Spatiotemporal mode-locked (STML) fiber lasers have become an excellent platform in nonlinear optics research due to the rich nonlinear evolution process. In order to overcome modal walk-off and realize phase locking of different transverse modes, it is usually crucial to reduce the modal group delay difference in the cavity. In this paper, we use long-period fiber grating (LPFG) to compensate the large modal dispersion and differential modal gain in the cavity, realizing the spatiotemporal mode-locking in step-index fibers cavity. The LPFG inscribed in few-mode fiber could induce strong mode coupling, which has wide operation bandwidth based on dual-resonance coupling mechanism. By using dispersive Fourier transform involved intermodal interference, we show that there is a stable phase difference between the transverse modes constituting the spatiotemporal soliton. These results would be beneficial for the study of spatiotemporal mode-locked fiber lasers.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Tianjin City

Special Project for Cooperation in Basic Research of Beijing, Tianjin and Hebei

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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