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Data-driven rogue waves and parameter discovery in the defocusing NLS equation with a potential using the PINN deep learning
December 18, 2020 Β· Declared Dead Β· π Physics Letters
"No code URL or promise found in abstract"
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Authors
Li Wang, Zhenya Yan
arXiv ID
2012.09984
Category
nlin.PS
Cross-listed
cs.LG,
quant-ph
Citations
100
Venue
Physics Letters
Last Checked
3 months ago
Abstract
The physics-informed neural networks (PINNs) can be used to deep learn the nonlinear partial differential equations and other types of physical models. In this paper, we use the multi-layer PINN deep learning method to study the data-driven rogue wave solutions of the defocusing nonlinear SchrΓΆdinger (NLS) equation with the time-dependent potential by considering several initial conditions such as the rogue wave, Jacobi elliptic cosine function, two-Gaussian function, or three-hyperbolic-secant function, and periodic boundary conditions. Moreover, the multi-layer PINN algorithm can also be used to learn the parameter in the defocusing NLS equation with the time-dependent potential under the sense of the rogue wave solution. These results will be useful to further discuss the rogue wave solutions of the defocusing NLS equation with a potential in the study of deep learning neural networks.
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