Generation of cylindrical vector beams in a linear cavity mode-locked fiber laser based on nonlinear multimode interference

光学 多模光纤 光纤激光器 材料科学 光纤布拉格光栅 激光器 脉冲持续时间 单模光纤 模式音量 光纤 物理 塑料光纤
作者
Jialiang Lv,Jun Lin,Xuexiao Ma,Chuansheng Dai,Chun Gu,Peijun Yao,Lixin Colin Xu,Qiwen Zhan
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:30 (11): 18320-18320 被引量:1
标识
DOI:10.1364/oe.458933
摘要

In this paper, a linear cavity mode-locked pulsed fiber laser generating cylindrical vector beams (CVBs) is proposed and demonstrated based on a nonlinear multimode interference. A homemade long-period fiber grating with a broad bandwidth of 121 nm is used as a mode converter inside the cavity. The saturable absorber was formed by single-mode fiber-graded index multimode fiber-single mode fiber (SMF-GIMF-SMF) structure. By controlling the pump power, the operation states are switchable among continuous-wave, Q-switched mode-locked (QML), and mode-locked regimes. The repetition rate of the QML CVB pulse envelope varies from 57.4 kHz to 102.7 kHz at the pump range of 118 to 285 mW. When increasing pump power to 380 mW, mode-locked CVB pulse repetition rate of 3.592 MHz, and pulse duration of 4.62 ns are achieved. In addition, the maximum single-pulse envelope energy can reach 510 nJ, and 142 mW average-power CVBs with a slope efficiency of as high as 20.2% can be obtained. Moreover, azimuthally and radially polarized beams can be obtained with mode purity over 95% in different operating regimes. The proposed fiber laser has a simple structure, and the operation is controllable in both temporal and spatial domains, which presents a flexible pulsed CVB source for application of laser processing, time or mode division multiplexing system, and spatiotemporal nonlinear optics.
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