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Constraints on Higgs boson properties using $WW^{*}(\rightarrow eνμν) jj$ production in 36.1 fb$^{-1}$ of $\sqrt{s}$=13 TeV $pp$ collisions with the ATLAS detector (2109.13808v2)

Published 28 Sep 2021 in hep-ex

Abstract: This article presents the results of two studies of Higgs boson properties using the $WW*(\rightarrow e\nu\mu\nu)jj$ final state, based on a dataset corresponding to 36.1/fb of $\sqrt{s}$=13 TeV proton$-$proton collisions recorded by the ATLAS experiment at the Large Hadron Collider. The first study targets Higgs boson production via gluon$-$gluon fusion and constrains the CP properties of the effective Higgs$-$gluon interaction. Using angular distributions and the overall rate, a value of $\tan(\alpha) = 0.0 \pm 0.4$ stat. $ \pm 0.3$ syst is obtained for the tangent of the mixing angle for CP-even and CP-odd contributions. The second study exploits the vector-boson fusion production mechanism to probe the Higgs boson couplings to longitudinally and transversely polarised $W$ and $Z$ bosons in both the production and the decay of the Higgs boson; these couplings have not been directly constrained previously. The polarisation-dependent coupling-strength scale factors are defined as the ratios of the measured polarisation-dependent coupling strengths to those predicted by the Standard Model, and are determined using rate and kinematic information to be $a_L=0.91{+0.10}{-0.18}$(stat.)${+0.09}{-0.17}$(syst.) and $a_{T}=1.2 \pm 0.4 $(stat.)$ {+0.2}_{-0.3} $(syst.). These coupling strengths are translated into pseudo-observables, resulting in $\kappa_{VV}= 0.91{+0.10}{-0.18}$(stat.)${+0.09}{-0.17}$(syst.) and $\epsilon_{VV} =0.13{+0.28}_{-0.20}$ (stat.)${+0.08}_{-0.10}$(syst.). All results are consistent with the Standard Model predictions.

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