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NLO corrections to e+e- to WWZ and e+e- to ZZZ

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arxiv 0912.4234 v2 pith:MLRI7KP5 submitted 2009-12-21 hep-ph

NLO corrections to e+e- to WWZ and e+e- to ZZZ

classification hep-ph
keywords correctionscompareelectroweakanalyseapplybosonsbreakingcalculate
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We calculate the one-loop electroweak corrections to e+e- to WWZ and e+e- to ZZZ and analyse their impacts on both the total cross section and some key distributions. These processes are important for the measurements of the quartic couplings of the massive gauge bosons which can be a window on the mechanism of spontaneous symmetry breaking. We find that even after subtracting the leading QED corrections, the electroweak corrections can still be large especially as the energy increases. We compare and implement different methods of dealing with potential instabilities in the routines pertaining to the loop integrals. For the real corrections we apply a dipole subtraction formalism and compare it to a phase-space slicing method.

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  1. The effects of a scalar singlet Leptoquark at the $Z$ factory

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    A scalar singlet leptoquark that explains B-meson anomalies produces a ~0.7% decrease in Z→τ+τ−, which future Z-factory measurements could detect, while Z→μ+μ− is essentially unchanged.