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Q

Qin Zhou

Researcher at King Abdulaziz University

Publications -  365
Citations -  13656

Qin Zhou is an academic researcher from King Abdulaziz University. The author has contributed to research in topics: Soliton & Nonlinear system. The author has an hindex of 53, co-authored 323 publications receiving 9404 citations. Previous affiliations of Qin Zhou include University of Massachusetts Amherst & Wuhan University.

Papers
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Optical solitons with quadratic-cubic nonlinearity by semi-inverse variational principle

TL;DR: In this article, the authors obtained resonant soliton solutions to the nonlinear Schrodinger's equation in quadratic-cubic nonlinear media using the semi-inverse variational principle.
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Optical solitons for Lakshmanan–Porsezian–Daniel model by modified simple equation method

TL;DR: In this article, the Lakshmanan-Porsezian-Daniel model was used to extract solitons from the Lakshmannan-porsezians model with the aid of modified simple equation method.
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Optical soliton perturbation with fractional-temporal evolution by first integral method with conformable fractional derivatives

TL;DR: In this paper, the authors studied optical solitons with fractional temporal evolution in presence of Hamiltonian perturbation terms and proposed an integral method with conformable fractional derivative to retrieve soliton solutions to the model.
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The unified method for conformable time fractional Schro¨dinger equation with perturbation terms

TL;DR: In this article, a unified method to the conformable time fractional non linear Schr o ¾ dinger equation with perturbation terms is presented, where the predicted solutions in finite series forms of various functions satisfying some particular ODEs are substituted into the reduced form of the governing equation.
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Conservation laws for cubic–quartic optical solitons in Kerr and power law media

TL;DR: In this paper, conservation laws for the cubic-quartic nonlinear Schrodinger's equation were obtained for soliton propagation when the group velocity dispersion is negligibly small.