1,166,013 research outputs found
A representation theorem for integral rigs and its applications to residuated lattices
We prove that every integral rig in Sets is (functorially) the rig of global
sections of a sheaf of really local integral rigs. We also show that this
representation result may be lifted to residuated integral rigs and then
restricted to varieties of these. In particular, as a corollary, we obtain a
representation theorem for pre-linear residuated join-semilattices in terms of
totally ordered fibers. The restriction of this result to the level of
MV-algebras coincides with the Dubuc-Poveda representation theorem.Comment: Manuscript submitted for publicatio
Annihilation poles of a Smirnov-type integral formula for solutions to quantum Knizhnik--Zamolodchikov equation
We consider the recently obtained integral representation of quantum
Knizhnik-Zamolodchikov equation of level 0. We obtain the condition for the
integral kernel such that these solutions satisfy three axioms for form factor
\'{a} la Smirnov. We discuss the relation between this integral representation
and the form factor of XXZ spin chain.Comment: 14 pages, latex, no figures
Functional equations for one-loop master integrals for heavy-quark production and Bhabha scattering
The method for obtaining functional equations, recently proposed by one of
the authors, is applied to one-loop box integrals needed in calculations of
radiative corrections to heavy-quark production and Bhabha scattering. We
present relationships between these integrals with different arguments and box
integrals with all propagators being massless. It turns out that functional
equations are rather useful for finding imaginary parts and performing analytic
continuations of Feynman integrals. For the box master integral needed in
Bhabha scattering, a new representation in terms of hypergeometric functions
admitting one-fold integral representation is derived. The hypergeometric
representation of a master integral for heavy-quark production follows from the
functional equation.Comment: 14 pages, 3 figure
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