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Search for the Standard Model Higgs Boson Produced in Association with Top Quarks Using the Full CDF Data Set

pmid: 23215271
arXiv: 1208.2662 , http://arxiv.org/abs/1208.2662
handle: 10261/109104 , 11365/40642 , 11390/984953 , 11573/494521 , 11584/231612 , 11567/970600 , 11568/828534 , 11568/519278 , 11580/25317 , 11695/66889 , 11384/38432 , 11585/152439 , 11369/426808 , 11571/649820 , 1721.1/75760 , 11571/649818
pmid: 23215271
arXiv: 1208.2662 , http://arxiv.org/abs/1208.2662
handle: 10261/109104 , 11365/40642 , 11390/984953 , 11573/494521 , 11584/231612 , 11567/970600 , 11568/828534 , 11568/519278 , 11580/25317 , 11695/66889 , 11384/38432 , 11585/152439 , 11369/426808 , 11571/649820 , 1721.1/75760 , 11571/649818
A search is presented for the standard model Higgs boson produced in association with top quarks using the full Run II proton-antiproton collision data set, corresponding to 9.45 inverse fb, collected by the Collider Detector at Fermilab. No significant excess over the expected background is observed, and 95% credibility-level upper bounds are placed on the cross section sigma(t\bar{t}H --> lepton + missing transverse energy + jets). For a Higgs boson mass of 125 GeV, we expect to set a limit of 12.6, and observe a limit of 20.5 times the standard model rate. This represents the most sensitive search for a standard model Higgs boson in this channel to date.
Submitted to Phys. Rev. Lett
- University of Tsukuba Japan
- University of Foggia Italy
- Scuola Normale Superiore Italy
- The Ohio State University at Marion United States
- University of Iowa United States
FERMILAB TEVATRON COLLIDER, Higgs-Boson decays, Data interpretation, statistical; Monte Carlo method; Nuclear energy; Nuclear physics; Protons; Models, theoretical; Physics and astronomy (all), FOS: Physical sciences, Standard Model Higgs boson, 530, CDF Collaboration, High Energy Physics - Experiment, Data Interpretation, Statistical; Monte Carlo Method; Nuclear Energy; Nuclear Physics; Protons; Models, Theoretical, High Energy Physics - Experiment (hep-ex), HIGH ENERGY PHYSICS, info:eu-repo/classification/ddc/530, proton antiproton collision, Nuclear Physics, HIGGS-BOSON production, CDF FERMILAB, Physics, ddc:530, 500, Models, Theoretical, Nuclear Energy, proton antiproton collisions; FERMILAB TEVATRON COLLIDER; Standard Model Higgs boson; HIGGS-BOSON production; Higgs-Boson decays, TEVATRON; CDF; HIGGS BOSON, Data Interpretation, Statistical, Data Interpretation, Statistical; Monte Carlo Method; Nuclear Energy; Nuclear Physics; Protons; Models, Theoretical; Physics and Astronomy (all), PARTICLE PHYSICS, Protons, Monte Carlo Method
FERMILAB TEVATRON COLLIDER, Higgs-Boson decays, Data interpretation, statistical; Monte Carlo method; Nuclear energy; Nuclear physics; Protons; Models, theoretical; Physics and astronomy (all), FOS: Physical sciences, Standard Model Higgs boson, 530, CDF Collaboration, High Energy Physics - Experiment, Data Interpretation, Statistical; Monte Carlo Method; Nuclear Energy; Nuclear Physics; Protons; Models, Theoretical, High Energy Physics - Experiment (hep-ex), HIGH ENERGY PHYSICS, info:eu-repo/classification/ddc/530, proton antiproton collision, Nuclear Physics, HIGGS-BOSON production, CDF FERMILAB, Physics, ddc:530, 500, Models, Theoretical, Nuclear Energy, proton antiproton collisions; FERMILAB TEVATRON COLLIDER; Standard Model Higgs boson; HIGGS-BOSON production; Higgs-Boson decays, TEVATRON; CDF; HIGGS BOSON, Data Interpretation, Statistical, Data Interpretation, Statistical; Monte Carlo Method; Nuclear Energy; Nuclear Physics; Protons; Models, Theoretical; Physics and Astronomy (all), PARTICLE PHYSICS, Protons, Monte Carlo Method
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