Precise predictions for double Higgs production in association with a vector boson in Effective Field Theory
Ramona Gröber, Michał Ryczkowski, Gioia Sacchi
Abstract
We present next-to-next-to-leading order (NNLO) QCD predictions for Higgs boson pair production in association with a weak gauge boson, pp Vhh with V=W,Z, in effective field theory descriptions of new physics. We consider both the Standard Model Effective Field Theory (SMEFT), truncated at dimension six, and the Higgs Effective Field Theory (HEFT) at leading order in the chiral expansion. The calculation builds on the factorisation of the quark-induced production process into Drell-Yan production of an off-shell vector boson and its subsequent decay into Vhh, supplemented in the Zhh channel by the loop-induced gg Zhh contribution that first enters at NNLO QCD. We provide inclusive predictions at s=13.6 and 14.0 TeV, including scale, PDF, and αs uncertainties, and express the results in terms of numerical coefficients that allow fast evaluations for arbitrary EFT parameters in the considered ranges. We find that, for W hh production, QCD corrections largely factorise from the EFT dependence, leading to almost flat K-factors. In contrast, Zhh production shows a stronger dependence on the EFT coefficients because of the gluon-induced component.
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