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Constraints on anomalous HVV couplings from the production of Higgs bosons decaying to $τ$ lepton pairs (1903.06973v2)

Published 16 Mar 2019 in hep-ex

Abstract: A study is presented of anomalous HVV interactions of the Higgs boson, including its $CP$ properties. The study uses Higgs boson candidates produced mainly in vector boson fusion and gluon fusion that subsequently decay to a pair of $\tau$ leptons. The data were recorded by the CMS experiment at the LHC in 2016 at a center-of-mass energy of 13 TeV and correspond to an integrated luminosity of 35.9 fb${-1}$. A matrix element technique is employed for the analysis of anomalous interactions. The results are combined with those from the H $\to 4\ell$ decay channel presented earlier, yielding the most stringent constraints on anomalous Higgs boson couplings to electroweak vector bosons expressed as effective cross section fractions and phases: the $CP$-violating parameter $f_{a3}\cos(\phi_{a3})$ $=$ $(0.00 \pm 0.27) \times 10{-3}$ and the $CP$-conserving parameters $f_{a2}\cos(\phi_{a2})$ $=$ $(0.08 {+1.04}_{-0.21}) \times 10{-3}$, $f_{\Lambda1}\cos(\phi_{\Lambda1})$ $=$ $(0.00 {+0.53}_{-0.09}) \times 10{-3}$, and $f_{\Lambda1}{\mathrm{Z}\gamma}\cos(\phi_{\Lambda1}{\mathrm{Z}\gamma})$ $=$ $(0.0 {+1.1}_{-1.3}) \times 10{-3}$. The current dataset does not allow for precise constraints on $CP$ properties in the gluon fusion process. The results are consistent with standard model expectations.

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