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Real-time observation of optical rogue waves in spatiotemporally mode-locked fiber lasers

Engineering and Technology

Real-time observation of optical rogue waves in spatiotemporally mode-locked fiber lasers

U. Teğin, P. Wang, et al.

Discover the fascinating dynamics of optical rogue waves in spatiotemporally mode-locked fiber lasers, where groundbreaking research by Uğur Teğin, Peng Wang, and Lihong V. Wang reveals the power of nonlinear transformations and clean pulse generation!

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~3 min • Beginner • English
Abstract
Fiber lasers offer tabletop nonlinear environments to mimic and study the complex dynamics of nature. Optical rogue waves, rarely occurring extreme intensity fluctuations, are one of the many subjects that can be investigated with a fiber laser cavity. Although oceanic rogue waves are a result of spatiotemporal dynamics, the single-mode nature of the fiber laser and the commonly used measurement techniques limit the optical rogue wave studies to only temporal dynamics. In this study, we overcome such limit to observe rogue wave real-time dynamics in spatiotemporally mode-locked fiber lasers by utilizing state-of-the-art compressed ultrafast photography technique. The multimode laser cavity exhibits long-tailed non-Gaussian distributions under relaxed cavity constraints. Single-shot spatiotemporal measurements of rogue events showed that, instead of noise bursts, the cavity produces clean pulses with high-quality beam profiles. Our results indicate that rogue events in spatiotemporally mode-locked fiber lasers undergo nonlinear spatial transformation due to a power-dependent consistent attractor.
Publisher
Communications Physics
Published On
Apr 05, 2023
Authors
Uğur Teğin, Peng Wang, Lihong V. Wang
Tags
optical rogue waves
fiber lasers
spatiotemporal measurements
nonlinear transformation
intensity distributions
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