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On an algebraic version of the Knizhnik–Zamolodchikov equation

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Abstract

A difference equation analogue of the Knizhnik–Zamolodchikov equation is exhibited by developing a theory of the generating function H(z) of Hurwitz polyzeta functions to parallel that of the polylogarithms. By emulating the role of the KZ equation as a connection on a suitable bundle, a difference equation version of the notion of connection is developed for which H(z) is a flat section. Solving a family of difference equations satisfied by the Hurwitz polyzetas leads to the normalized multiple Bernoulli polynomials (NMBPs) as the counterpart to the Hurwitz polyzeta functions, at tuples of non-positive integers. A generating function for these polynomials satisfies a similar difference equation to that of H(z), but in contrast to the fact that said polynomials have rational coefficients, the algebraic independence of the usual Hurwitz zeta functions is proven, and the Hurwitz polyzeta functions are shown to satisfy no algebraic relations other than those arising from the shuffle relations. The values of the NMBPs at z=1 provide a regularization of the multiple zeta values at tuples of negative integers, which is shown to agree with the regularization given in Akiyama et al. (Acta Arith. 98:107–116, 2001). Various elementary properties of these values are proven.

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Acknowledgements

The author would like to thank Minhyong Kim for his constant encouragement, along with Ajneet Dhillon, Dinesh Thakur, and the unnamed referees, all of whom suggested valuable changes to the paper.

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Correspondence to Sheldon T. Joyner.

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Joyner, S.T. On an algebraic version of the Knizhnik–Zamolodchikov equation. Ramanujan J 28, 361–384 (2012). https://doi.org/10.1007/s11139-012-9397-3

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  • DOI: https://doi.org/10.1007/s11139-012-9397-3

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