The algebraic and Hamiltonian structure of the dispersionless Benney and Toda hierarchies

Fairlie, D.B. and Strachan, I.A.B. (1996) The algebraic and Hamiltonian structure of the dispersionless Benney and Toda hierarchies. Inverse Problems, 12(6), pp. 885-908. (doi: 10.1088/0266-5611/12/6/006)

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Abstract

The algebraic and Hamiltonian structures of the multicomponent dispersionless Benney and Toda hierarchies are studied. This is achieved by using a modified set of variables for which there is a symmetry between the basic fields. This symmetry enables formulae normally given implicitly in terms of residues, such as conserved charges and fluxes, to be calculated explicitly. As a corollary of these results the equivalence of the Benney and Toda hierarchies is established. It is further shown that such quantities may be expressed in terms of generalized hypergeometric functions, the simplest example involving Legendre polynomials. These results are then extended to systems derived from a rational Lax function and a logarithmic function. Various reductions are also studied.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Strachan, Professor Ian
Authors: Fairlie, D.B., and Strachan, I.A.B.
College/School:College of Science and Engineering > School of Mathematics and Statistics > Mathematics
Journal Name:Inverse Problems
Publisher:IOP Publishing
ISSN:0266-5611
ISSN (Online):1361-6420

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