76 research outputs found

    Formal conserved quantities for isothermic surfaces

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    Isothermic surfaces in SnS^n are characterised by the existence of a pencil ∇t\nabla^t of flat connections. Such a surface is special of type dd if there is a family p(t)p(t) of ∇t\nabla^t-parallel sections whose dependence on the spectral parameter tt is polynomial of degree dd. We prove that any isothermic surface admits a family of ∇t\nabla^t-parallel sections which is a formal Laurent series in tt. As an application, we give conformally invariant conditions for an isothermic surface in S3S^3 to be special.Comment: 13 page

    The Ribaucour transformation in Lie sphere geometry

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    We discuss the Ribaucour transformation of Legendre maps in Lie sphere geometry. In this context, we give a simple conceptual proof of Bianchi's original Permutability Theorem and its generalisation by Dajczer--Tojeiro. We go on to formulate and prove a higher dimensional version of the Permutability Theorem. It is shown how these theorems descend to the corresponding results for submanifolds in space forms.Comment: v2: Introduction expanded and references added. 20 pages, 4 Postscript figure

    Generalized isothermic lattices

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    We study multidimensional quadrilateral lattices satisfying simultaneously two integrable constraints: a quadratic constraint and the projective Moutard constraint. When the lattice is two dimensional and the quadric under consideration is the Moebius sphere one obtains, after the stereographic projection, the discrete isothermic surfaces defined by Bobenko and Pinkall by an algebraic constraint imposed on the (complex) cross-ratio of the circular lattice. We derive the analogous condition for our generalized isthermic lattices using Steiner's projective structure of conics and we present basic geometric constructions which encode integrability of the lattice. In particular, we introduce the Darboux transformation of the generalized isothermic lattice and we derive the corresponding Bianchi permutability principle. Finally, we study two dimensional generalized isothermic lattices, in particular geometry of their initial boundary value problem.Comment: 19 pages, 11 figures; v2. some typos corrected; v3. new references added, higlighted similarities and differences with recent papers on the subjec
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