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Anatomy of the Higgs fits: A first guide to statistical treatments of the theoretical uncertainties

Authors :
Sylvain Fichet
Grégory Moreau
Source :
Nuclear Physics B, Vol 905, Iss C, Pp 391-446 (2016)
Publication Year :
2016
Publisher :
Elsevier, 2016.

Abstract

The studies of the Higgs boson couplings based on the recent and upcoming LHC data open up a new window on physics beyond the Standard Model. In this paper, we propose a statistical guide to the consistent treatment of the theoretical uncertainties entering the Higgs rate fits. Both the Bayesian and frequentist approaches are systematically analysed in a unified formalism. We present analytical expressions for the marginal likelihoods, useful to implement simultaneously the experimental and theoretical uncertainties. We review the various origins of the theoretical errors (QCD, EFT, PDF, production mode contamination…). All these individual uncertainties are thoroughly combined with the help of moment-based considerations. The theoretical correlations among Higgs detection channels appear to affect the location and size of the best-fit regions in the space of Higgs couplings. We discuss the recurrent question of the shape of the prior distributions for the individual theoretical errors and find that a nearly Gaussian prior arises from the error combinations. We also develop the bias approach, which is an alternative to marginalisation providing more conservative results. The statistical framework to apply the bias principle is introduced and two realisations of the bias are proposed. Finally, depending on the statistical treatment, the Standard Model prediction for the Higgs signal strengths is found to lie within either the 68% or 95% confidence level region obtained from the latest analyses of the 7 and 8 TeV LHC datasets.

Details

Language :
English
ISSN :
05503213 and 18731562
Volume :
905
Issue :
C
Database :
Directory of Open Access Journals
Journal :
Nuclear Physics B
Publication Type :
Academic Journal
Accession number :
edsdoj.3a1f5803a59a441b8d40ae943638226b
Document Type :
article
Full Text :
https://doi.org/10.1016/j.nuclphysb.2016.02.019