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Yi-Tian Gao
Researcher at National Laboratory for Computational Fluid Dynamics
Publications - 202
Citations - 6384
Yi-Tian Gao is an academic researcher from National Laboratory for Computational Fluid Dynamics. The author has contributed to research in topics: Soliton & Nonlinear system. The author has an hindex of 39, co-authored 178 publications receiving 5391 citations. Previous affiliations of Yi-Tian Gao include Beihang University.
Papers
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Transformations for a generalized variable-coefficient nonlinear Schrodinger model from plasma physics, arterial mechanics and optical fibers with symbolic computation
TL;DR: In this paper, a generalized variable-coefficient nonlinear Schrodinger model is proposed and four transformations have been constructed from such a model to the known standard and cylindrical nonsmrodinger equations with the relevant constraints on the variable coefficients presented.
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Spherical Kadomtsev-Petviashvili equation and nebulons for dust ion-acoustic waves with symbolic computation
TL;DR: In this paper, a spherical Kadomtsev-Petviashvili equation is derived with symbolic computation for the dust ion-acoustic waves with zenith-angle perturbation.
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Variable-coefficient higher-order nonlinear Schrödinger model in optical fibers: Variable-coefficient bilinear form, Bäcklund transformation, brightons and symbolic computation
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Symbolic-computation study of the perturbed nonlinear Schrödinger model in inhomogeneous optical fibers
TL;DR: In this article, the perturbed nonlinear Schrodinger model with variable coefficients is used to obtain exact analytic bright-solitonic solutions with or without the chirp.
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Transformations for a generalized variable-coefficient Korteweg de Vries model from blood vessels, Bose Einstein condensates, rods and positons with symbolic computation
Bo Tian,Bo Tian,Guang-Mei Wei,Guang-Mei Wei,Chun-Yi Zhang,Wen-Rui Shan,Yi-Tian Gao,Yi-Tian Gao +7 more
TL;DR: In this article, a large class of generalized variable-coefficient Korteweg-de Vries (KdV) models with external-force and perturbed/dissipative terms is studied.