Solitons via Lie-B\"acklund Transformation for 5D Low-energy String Theory
Regular Chaot. Dyn. 14:526-534,2009 We apply a non-linear matrix transformation of Lie-Backlund type on a seed soliton configuration in order to obtain a new solitonic solution in the framework of the 5D low-energy effective field theory of the bosonic string. The seed solution represents a stationa...
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Zusammenfassung: | Regular Chaot. Dyn. 14:526-534,2009 We apply a non-linear matrix transformation of Lie-Backlund type on a seed
soliton configuration in order to obtain a new solitonic solution in the
framework of the 5D low-energy effective field theory of the bosonic string.
The seed solution represents a stationary axisymmetric two-soliton
configuration previously constructed through the inverse scattering method and
consists of a massless gravitational field coupled to a non-trivial chargeless
dilaton and to an axion field endowed with charge. We apply a fully
parameterized non-linear matrix transformation of Ehlers type on this massless
solution and get a massive rotating axisymmetric gravitational soliton coupled
to charged axion and dilaton fields. We discuss on some physical properties of
both the initial and the generated solitons and fully clarify the physical
effect of the non-linear normalized Ehlers transformation on the seed solution,
in particular, the generated field configuration acquires mass and charge
terms, and does not possess some of the bizarre properties that the initial ISM
solitonic solution does. |
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DOI: | 10.48550/arxiv.hep-th/0512147 |