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A spatial sixth-order alternating direction implicit method for two-dimensional cubic nonlinear Schrodinger equations
Li, L.Z.; Sun, H. W.; Tam, S. C.
2015-02-01
Source PublicationComputer Physics Communications
ISSN0010-4655
Pages38-48
Abstract

Based on the combined compact difference scheme, an alternating direction implicit method is proposed for solving two-dimensional cubic nonlinear Schrodinger equations. The proposed method is sixth-order accurate in space and second-order accurate in time. The linear Fourier analysis method is exploited to study the stability of the proposed method. The efficiency and accuracy of the proposed method are tested numerically, and the common solution pattern of the nonlinear Schrodinger equation is also illustrated using relevant examples known in the literature.

KeywordCubic Nonlinear Schrodinger Equation Combined Compact Difference Scheme Alternating Direction Implicit Method Unconditional Stability Solution Pattern
DOI10.1016/j.cpc.2014.10.008
Language英語English
The Source to ArticlePB_Publication
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Document TypeJournal article
CollectionDEPARTMENT OF MATHEMATICS
Corresponding AuthorSun, H. W.
Recommended Citation
GB/T 7714
Li, L.Z.,Sun, H. W.,Tam, S. C.. A spatial sixth-order alternating direction implicit method for two-dimensional cubic nonlinear Schrodinger equations[J]. Computer Physics Communications, 2015, 38-48.
APA Li, L.Z.., Sun, H. W.., & Tam, S. C. (2015). A spatial sixth-order alternating direction implicit method for two-dimensional cubic nonlinear Schrodinger equations. Computer Physics Communications, 38-48.
MLA Li, L.Z.,et al."A spatial sixth-order alternating direction implicit method for two-dimensional cubic nonlinear Schrodinger equations".Computer Physics Communications (2015):38-48.
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