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The real-virtual antenna functions for S to Qbar{Q} X at NNLO QCD
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The real-virtual antenna functions for S to Qbar{Q} X at NNLO QCD
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We determine, in the antenna subtraction framework for handling infrared divergences in higher order QCD calculations, the real-virtual antenna functions for processes involving the production of a pair of massive quarks by an uncolored initial state at NNLO QCD. The integrated leading and subleading color real-virtual antenna functions are computed analytically in terms of (cyclotomic) harmonic polylogarithms. As a by-product and check we compute $R_Q=\sigma(e^+e^-\to \gamma^*\to Q\bar{Q}X)/\sigma(e^+e^-\to \gamma^*\to\mu^+\mu^-)$ and compare with existing results. Our result for $R_Q$ is exact to order $\alpha_s^2$.
Forward citations
Cited by 1 Pith paper
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Antenna subtraction at NNLO for heavy quark pair production at hadron colliders: the non-diagonal channels
NNLO antenna subtraction is completed for the qq, qq' and qg channels of heavy-quark pair production in full colour, with new massive soft factors and integrated antennae validated against Top++.
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