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- W2078443570 abstract "In the framework of the 5D low-energy effective field theory of the heterotic string with no vector fields excited, we combine two nonlinear methods in order to construct a solitonic field configuration. We first apply the inverse scattering method on a trivial vacuum solution and obtain a stationary axisymmetric two-soliton configuration consisting of a massless gravitational field coupled to a nontrivial chargeless dilaton and to an axion field endowed with charge. The implementation of this method was done following a scheme previously proposed by Yurova. We also show that within this scheme it is not possible to get massive gravitational solitons at all. We then apply a nonlinear Lie-Backlund matrix transformation of Ehlers type on this massless solution and get a massive rotating axisymmetric gravitational soliton coupled to axion and dilaton fields endowed with charges. We study as well some physical properties of the constructed massless and massive solitons and discuss the effect of the generalized solution generating technique on the seed solution and its further generalizations." @default.
- W2078443570 created "2016-06-24" @default.
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- W2078443570 date "2004-05-05" @default.
- W2078443570 modified "2023-09-25" @default.
- W2078443570 title "Inverse scattering method, Lie-Bäcklund transformations, and solitons for low-energy effective field equations of 5D string theory" @default.
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- W2078443570 doi "https://doi.org/10.1103/physrevd.69.105002" @default.
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