Study of WH production through vector boson scattering and extraction of the relative sign of the W and Z couplings to the Higgs boson in proton-proton collisions at s= \sqrt{s} = 13 TeV

Abstract

A search for the production of a W boson and a Higgs boson through vector boson scattering (VBS) is presented, using CMS data from proton-proton collisions at s= \sqrt{s} = 13 TeV collected from 2016 to 2018. The integrated luminosity of the data sample is 138 fb1 ^{-1} . Selected events must be consistent with the presence of two jets originating from VBS, the leptonic decay of the W boson to an electron or muon, and a Higgs boson decaying into a pair of b quarks, reconstructed as either a single merged jet or two resolved jets. A measurement of the process as predicted by the standard model (SM) is performed alongside a study of beyond-the-SM (BSM) scenarios. The SM analysis sets an observed (expected) 95% confidence level upper limit of 14.3 (9.0) on the ratio of the measured VBS WH cross section to that expected by the SM. The BSM analysis, conducted within the so-called κ \kappa framework, excludes all scenarios with λWZ< \lambda_{\mathrm{W}\mathrm{Z}} < 0 that are consistent with current measurements, where λWZ=κW/κZ \lambda_{\mathrm{W}\mathrm{Z}} = \kappa_{\mathrm{W}}/\kappa_{\mathrm{Z}} and κW \kappa_{\mathrm{W}} and κZ \kappa_{\mathrm{Z}} are the HWW and HZZ coupling modifiers, respectively. The signficance of the exclusion is beyond 5 standard deviations, and it is consistent with the SM expectation of λWZ= \lambda_{\mathrm{W}\mathrm{Z}} = 1.A search for the production of a W boson and a Higgs boson through vector boson scattering (VBS) is presented, using CMS data from proton-proton collisions at s\sqrt{s} = 13 TeV collected from 2016 to 2018. The integrated luminosity of the data sample is 138 fb1^{-1}. Selected events must be consistent with the presence of two jets originating from VBS, the leptonic decay of the W boson to an electron or muon, and a Higgs boson decaying into a pair of b quarks, reconstructed as either a single merged jet or two resolved jets. A measurement of the process as predicted by the standard model (SM) is performed alongside a study of beyond-the-SM (BSM) scenarios. The SM analysis sets an observed (expected) 95% confidence level upper limit of 14.3 (9.0) on the ratio of the measured VBS WH cross section to that expected by the SM. The BSM analysis, conducted within the so-called κ\kappa framework, excludes all scenarios with λWZ\lambda_\mathrm{WZ} <\lt 0 that are consistent with current measurements, where λWZ\lambda_\mathrm{WZ} = κW/κZ\kappa_\mathrm{W}/\kappa_\mathrm{Z} and κW\kappa_\mathrm{W} and κZ\kappa_\mathrm{Z} are the HWW and HZZ coupling modifiers, respectively. The signficance of the exclusion is beyond 5 standard deviations, and it is consistent with the SM expectation of λWZ\lambda_\mathrm{WZ} = 1

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