Point configurations, Cremona transformations and the elliptic difference Painlev\'e equation

Abstract

A theoretical foundation for a generalization of the elliptic difference Painlev\'e equation to higher dimensions is provided in the framework of birational Weyl group action on the space of point configurations in general position in a projective space. By introducing an elliptic parametrization of point configurations, a realization of the Weyl group is proposed as a group of Cremona transformations containing elliptic functions in the coefficients. For this elliptic Cremona system, a theory of τ-functions is developed to translate it into a system of bilinear equations of Hirota-Miwa type for the τ-functions on the lattice.

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