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arXiv:1610.07059·v2·High Energy Physics — Phenomenology

30 years, some 700 integrals, and 1 dessert, or: Electroweak two-loop corrections to the Zbb vertex

I. Dubovyk (Univ. Hamburg)🇩🇪 · A. Freitas (Univ. Pittsburgh)🇺🇸 · J. Gluza (Univ. Katowice)🇵🇱 · T. Riemann (Königs Wusterhausen and Univ. Katowice)🇵🇱 · J. Usovitsch (Humboldt-Univ. zu Berlin)🇩🇪

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Abstract

The one-loop corrections to the weak mixing angle derived from the vertex, are known since 1985. It took another 30 years to calculate the complete electroweak two-loop corrections to . The main obstacle was the calculation of the O(700) bosonic two-loop vertex integrals with up to three mass scales, at . We did not perform the usual integral reduction and master evaluation, but chose a completely numerical approach, using two different calculational chains. One method relies on publicly available sector decomposition implementations. Further, we derived Mellin-Barnes (MB) representations, exploring the publicly available MB suite. We had to supplement the MB suite by two new packages: AMBRE~3, a Mathematica program, for the efficient treatment of non-planar integrals and MBnumerics for advanced numerics in the Minkowskian space-time. Our preliminary result for LL2016, the "dessert", for the electroweak bosonic two-loop contributions to is: , with . This contribution is about a quarter of the corresponding fermionic corrections and of about the same magnitude as several of the known higher-order QCD corrections. The is now predicited in the Standard Model with a relative error of [1].

Comments: Contribution to the proceedings of the conference "Loops and Legs in Quantum Field Theory - LL 2016", 24 - 29 April 2016, Leipzig, Germany. Minor corrections in the text, few equations added. Version 2 compared to v.1: typos in eq. 1.24 corrected

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