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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 1 AOD on Single Top Marcello Barisonzi
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 2 Top Quark Largest fermion mass in Standard Model large coupling to the Higgs boson Electroweak parameter with worst experimental resolution Constraint on the Higgs mass via loop diagrams Latest Tevatron average for the top mass: results in a Higgs mass prediction of: Better top mass resolution more precise prediction of M H
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 3 Electroweak single top production Three different processes: s-channel W-t production W-gluon fusion Cross section measurement allows direct measurement of V tb in CKM Single top is 100% polarized: sensibility to anomalous couplings Background: ttbar and W+jets W-gluon fusion channel has a sizeable cross section: mass measurements are competitive with ttbar's Selection cuts W-gluon: 1 isolated lepton p T >20 GeV, | |<2.5 1 b-jet p T >50 GeV, | |<2.5 1 light jet p T >50 GeV, | |>2.5 σ~11±1 pbσ~60±?? pb σ~247±8 pb
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 4 Single top mass measurement in W-gluon 100k events Fast Simulation M W reconstructed from lepton + missing E T No combinatorics (W-b assignment unique) Two solutions for p z : currently highest top p T chosen, other selections under study Single top mass resolution competitive with ttbar's Same data used for Full Simulation Method High p T top Δφ(W,b)Best Mass Top Mass174.0±11.4173.4±12.1175.7±8.9 ATLFAST
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 5 Full Simulation Data MC Data generated with TopReX (LO single top event gen.) Pythia used for decay and hadronisation 100k events generated and stored in GRID Detector simulation : GEANT4 Physics objects reconstructed with ATHENA v10 Data retrieved and stored locally at NIKHEF Analyses both on AOD and Root Ntuple
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 6 Single Top during Commissioning Phase The NIKHEF top group has a strong commitment to study the efficiency of analyses in the commissioning phase In this phase, the detector has to be properly understood Most evident effects: Jet Energy calibration Alignment of the Inner Detector Imperfect alignment can degrade the performance of b-tagging, which is an “ingredient” of all top-quark analyses. Talk from Rozanov (Atlas Overview Week 2004): Rejection factor R u =74 (ε b =60%) after 6 months of operation (91% of the nominal rejection)
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 7 B-tagging 101 B-tagging in ATLAS is based on secondary-vertex finding Discriminating variables: longitudinal impact parameter z 0 and transverse impact parameter a 0 Other variables: track multiplicity in secondary vertex a 0 <0 Secondary Vertex a 0 >0 x y Primary vertex Jet axis
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 8 B-tag Likelihood The secondary vertex parameters are combined to give a Likelihood value Which can be used as a quality cut for the b-jets The b-tagging algorithm returns a positive likelihood or a negative value (out of acceptance) for each jet
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 9 B-tag on AOD By default, AOD data contains b-tag for jets with Cone algorithm dR=0.7 ATLFAST studies were performed with dR=0.4 cones Luckily, b-tagging can be rerun on AOD data for comparison By changing the likelihood cut and the cone size, I can naively estimate the effect of a degraded b-tagging during commissioning
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 10 Efficiency and Purity W-gluon single top events have two b-jets: one from the top decay, one from a gluon splitting in the initial state To isolate the “hard” b-quark, I select b-quarks with Pt>50 GeV and |Eta|<2.5 For the selected b-quark, I look at the presence of at least one b-tagged jet (with Pt>50 GeV and |Eta|<2.5 and varying likelihood cuts). I define efficiency as the % of times I find such a jet I plot the dR between the highest Pt b-jet and the b-quark A “good” match is defined if the b-quark falls inside the jet cone (dR<0.4, dR<0.7) I define purity as the ratio between good and bad matches
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 11 Efficiency/Purity Plot Variation of the efficiency/purity for different likelihood cuts Straight lines = Efficiencies for 0.4 (blue) and 0.7 (red) cones Dashed lines = Purity
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 12 Effects of b-tagging for top mass reconstruction I applied my analysis to single top (signal) plus ttbar (background) data. b-tagging efficiency for ttbar larger (2 hard b-quarks) Requiring one and only one b-jet in the analysis then improves the rejection of single top w.r.t. ttbar This effect is evident for very loose cuts on b-likelihood, where the b-tag efficiency is maximum. Choose 0.7 cone. I will present the top mass reconstruction in two extreme cases: A cut on bLikelihood > 0 (all jets with positive likelihood are accepted as b-jets A cut on bLikelihood > 0.9 (perfect b-tagging)
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 13 bLikelihood > 0 Blue: single top Red: ttbar With bad b-tagging, single top peak is visible 1 fb -1 (~100 LHC days)
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 14 bLikelihood > 0.9 Blue: single top Red: ttbar With good b-tagging, S/B ~ 1 1 fb -1 (~100 LHC days)
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Marcello Barisonzi First results of AOD analysis on t-channel Single Top DAD 30/05/2005 Page 15 What next? Before I can conclude that single top can be observed in the commissioning phase, I need to: Evaluate W+jets background (may be catastrophic!) Try a non-naïve approach to b-tagging (tweaking algorithm parameters) Study the effect of bad missing Et (necessary to reconstruct the W) If I am successful (timespan = 1 week!) the results will be presented by Ivo in Rome
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