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Phase-tailored assembly and encoding of dissipative soliton molecules

Engineering and Technology

Phase-tailored assembly and encoding of dissipative soliton molecules

Y. Liu, S. Huang, et al.

Explore groundbreaking research by Yusong Liu, Siyun Huang, and colleagues on a new phase-tailored quaternary encoding format. This innovative approach manipulates dissipative soliton molecules to create robust, programmable phase streams, with potential applications in high-capacity all-optical storage.... show more
Abstract
Self-assembly of particle-like dissipative solitons, in the presence of mutual interactions, emphasizes the vibrant concept of soliton molecules in varieties of laser resonators. Controllable manipulation of the molecular patterns, held by the degrees of freedom of internal motions, still remains challenging to explore more efficient and subtle tailoring approaches for the increasing demands. Here, we report a new phase-tailored quaternary encoding format based on the controllable internal assembly of dissipative soliton molecules. Artificial manipulation of the energy exchange of soliton-molecular elements stimulates the deterministic harnessing of the assemblies of internal dynamics. Self-assembled soliton molecules are tailored into four phase-defined regimes, thus constituting the phase-tailored quaternary encoding format. Such phase-tailored streams are endowed with great robustness and are resistant to significant timing jitter. All these results experimentally demonstrate the programmable phase tailoring and exemplify the application of the phase-tailored quaternary encoding, prospectively promoting high-capacity all-optical storage.
Publisher
Light: Science & Applications
Published On
Dec 20, 2023
Authors
Yusong Liu, Siyun Huang, Zilong Li, Haoguang Liu, Yixiang Sun, Ran Xia, Lisong Yan, Yiyang Luo, Huanhuan Liu, Gang Xu, Qizhen Sun, Xiahui Tang, Perry Ping Shum
Tags
dissipative soliton molecules
quaternary encoding
phase tailoring
optical storage
soliton dynamics
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