A search for new physics in top quark production is performed in proton-proton collisions at 13TeV . The data set corresponds to an integrated luminosity of 35.9fb-1 collected in 2016 with the CMS detector. Events with two opposite-sign isolated leptons (electrons or muons), and b quark jets in the final state are selected. The search is sensitive to new physics in top quark pair production and in single top quark production in association with a W boson. No significant deviation from the standard model expectation is observed. Results are interpreted in the framework of effective field theory and constraints on the relevant effective couplings are set, one at a time, using a dedicated multivariate analysis. This analysis differs from previous searches for new physics in the top quark sector by explicitly separating tW from tt¯ events and exploiting the specific sensitivity of the tW process to new physics.
Search for new physics in top quark production in dilepton final states in proton-proton collisions at √s=13TeV / De Iorio, Agostino; Di Crescenzo, Antonia; Fienga, Francesco; Galati, Giuliana; Iorio, A. O. M.; Lista, Luca; Sciacca, Crisostomo; Voevodina, Elena; Et, Al.. - In: THE EUROPEAN PHYSICAL JOURNAL. C, PARTICLES AND FIELDS. - ISSN 1434-6044. - 79:11(2019), p. 886. [10.1140/epjc/s10052-019-7387-y]
Search for new physics in top quark production in dilepton final states in proton-proton collisions at √s=13TeV
De Iorio, Agostino;Di Crescenzo, Antonia;Fienga, Francesco;Galati, Giuliana;Iorio, A. O. M.;Lista, Luca;Sciacca, Crisostomo;Voevodina, Elena;
2019
Abstract
A search for new physics in top quark production is performed in proton-proton collisions at 13TeV . The data set corresponds to an integrated luminosity of 35.9fb-1 collected in 2016 with the CMS detector. Events with two opposite-sign isolated leptons (electrons or muons), and b quark jets in the final state are selected. The search is sensitive to new physics in top quark pair production and in single top quark production in association with a W boson. No significant deviation from the standard model expectation is observed. Results are interpreted in the framework of effective field theory and constraints on the relevant effective couplings are set, one at a time, using a dedicated multivariate analysis. This analysis differs from previous searches for new physics in the top quark sector by explicitly separating tW from tt¯ events and exploiting the specific sensitivity of the tW process to new physics.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.