
arXiv: nlin/0302007
Several classes of solutions of the generalized Weierstrass system, which induces constant mean curvature surfaces into four-dimensional Euclidean space are constructed. A gauge transformation allows us to simplify the system considered and derive factorized classes of solutions. A reduction of the generalized Weierstrass system to decoupled CP^1 sigma models is also considered. A new procedure for constructing certain classes of solutions, including elementary solutions (kinks and bumps) and multisoliton solutions is described in detail. The constant mean curvature surfaces associated with different types of solutions are presented. Some physical interpretations of the results obtained in the area of string theory are given.
arxiv version is already official
Nonlinear Sciences - Exactly Solvable and Integrable Systems, constant mean curvature surfaces, string theory, FOS: Physical sciences, Soliton theory, asymptotic behavior of solutions of infinite-dimensional Hamiltonian systems, Minimal surfaces in differential geometry, surfaces with prescribed mean curvature, Exactly Solvable and Integrable Systems (nlin.SI), multisoliton solutions, PDEs in connection with quantum mechanics, sigma models
Nonlinear Sciences - Exactly Solvable and Integrable Systems, constant mean curvature surfaces, string theory, FOS: Physical sciences, Soliton theory, asymptotic behavior of solutions of infinite-dimensional Hamiltonian systems, Minimal surfaces in differential geometry, surfaces with prescribed mean curvature, Exactly Solvable and Integrable Systems (nlin.SI), multisoliton solutions, PDEs in connection with quantum mechanics, sigma models
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