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Solitons: conservation laws & dressing methods

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arxiv 1812.11914 v5 pith:AC7PNUKT submitted 2018-12-31 math-ph hep-thmath.MPnlin.SI

classification math-phhep-thmath.MPnlin.SI
keywords integrableassociatedcontinuousdiscreteequationssolutionsconservationderived
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We review some of the fundamental notions associated to the theory of solitons. More precisely, we focus on the issue of conservation laws via the existence of the Lax pair and also on methods that provide solutions to partial or ordinary differential equations that are associated to discrete or continuous integrable systems. The Riccati equation associated to a given continuous integrable system is also solved and hence suitable conserved quantities are derived. The notion of the Darboux-Backlund transformation is introduced and employed in order to obtain soliton solutions for specific examples of integrable equations. The Zakharov-Shabat dressing scheme and the Gelfand-Levitan-Marchenko equation are also introduced. Via this method generic solutions are produced, and integrable hierarchies are explicitly derived. Various discrete and continuous integrable models are employed as examples such as the Toda chain, the discrete non-linear Schrodinger model, the Korteweg-de Vries and non-linear Schrodinger equations as well as the sine-Gordon and Liouville models.

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  1. Off-diagonal deformations of regular Schwarzschild black holes and general relativistic G. Perelman thermodynamics

    physics.gen-ph 2025-05 reject novelty 5.0 of 10

    The authors build off-diagonal deformations of regular Schwarzschild black holes and introduce Perelman-type geometric flow thermodynamic variables for them.

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