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Revision 1.9 by vimartin, Thu Oct 11 08:44:16 2012 UTC

# Line 1 | Line 1
1  
2 + [UPDATE]
3 +
4   The datasets used for this analysis are summarized in
5 < Tables.~\ref{tab:DatasetsData} and~\ref{tab:DatasetsMC} for data and Monte
6 < Carlo, respectively. The total integrated luminosity is \lumi after
7 < applying the official good run list~\cite{json}. The main Monte Carlo
5 > Tables~\ref{tab:DatasetsData} (data) and~\ref{tab:DatasetsMC} (MC).
6 > The total integrated luminosity is \lumi after
7 > applying the official good run list. The main Monte Carlo
8   samples are generated with Madgraph, though samples with
9   alternative generators such as Powheg and MC@NLO are also used for
10   the derivation of systematic uncertainties in the \ttbar~background prediction.
# Line 11 | Line 13 | also summarized in Table.~\ref{tab:TrigD
13  
14   \begin{table}[!ht]
15   \begin{center}
16 < \begin{tabular}{c|c}
16 > \begin{tabular}{l}
17 > \hline
18 > Dataset Name   \\
19 > \hline
20   \hline
21 < Dataset Description                   &   Dataset Name   \\
21 > Single Lepton Samples \\
22   \hline
23 +  /SingleElectron/Run2012A-13Jul2012-v1/AOD   \\
24 +  /SingleMu/Run2012A-13Jul2012-v1/AOD   \\
25 +  /SingleElectron/Run2012B-13Jul2012-v1/AOD   \\
26 +  /SingleMu/Run2012B-13Jul2012-v1/AOD   \\
27 +  /SingleElectron/Run2012C-PromptReco-v*/AOD   \\        
28 +  /SingleMu/Run2012C-PromptReco-v*/AOD   \\        
29   \hline
19 \multicolumn{2}{c}{Single Lepton Samples} \\
30   \hline
31 < Run2011A ElectronHad May10ReReco  & /ElectronHad/Run2011A-May10ReReco-v1/AOD \\
32 < Run2011A SingleMu May10ReReco  & /SingleMu/Run2011A-May10ReReco-v1/AOD \\
33 < Run2011A ElectronHad 05Aug2011  & /ElectronHad/Run2011A-05Aug2011-v1/AOD \\
34 < Run2011A SingleMu 05Aug2011  & /SingleMu/Run2011A-05Aug2011-v1/AOD \\
35 < Run2011A ElectronHad PromptReco  & /ElectronHad/Run2011A-PromptReco-v*/AOD \\
36 < Run2011A SingleMu PromptReco  & /SingleMu/Run2011A-PromptReco-v*/AOD \\
37 < Run2011B ElectronHad PromptReco  & /ElectronHad/Run2011B-PromptReco-v1/AOD \\
38 < Run2011B SingleMu PromptReco  & /SingleMu/Run2011B-PromptReco-v1/AOD \\
39 < \hline
40 < \hline
41 < \multicolumn{2}{c}{Dilepton Samples} \\
32 < \hline
33 < Run2011A MuEl PromptReco            &  /MuEG/Run2011A-PromptReco-v*/AOD   \\
34 < Run2011A DiMuon PromptReco          &  /DoubleMu/Run2011A-PromptReco-v*/AOD   \\
35 < Run2011A SingleMuon PromptReco      &  /SingleMu/Run2011A-PromptReco-v*/AOD   \\
36 < Run2011A DiElectron PromptReco      &  /DoubleElectron/Run2011A-PromptReco-v*/AOD   \\
37 < Run2011B DiElectron PromptReco      &  /DoubleElectron/Run2011B-PromptReco-v1/AOD   \\
38 < Run2011B DiMuon PromptReco          &  /DoubleMu/Run2011B-PromptReco-v1/AOD   \\
39 < Run2011B MuEl PromptReco            &  /MuEG/Run2011B-PromptReco-v1/AOD   \\
40 < Run2011B SingleMuon PromptReco      &  /SingleMu/Run2011B-PromptReco-v1/AOD   \\
41 < Run2011B SingleElectron PromptReco  &  /SingleElectron/Run2011B-PromptReco-v1/AOD   \\
31 > Dilepton Samples (only used for dilepton control region)\\
32 > \hline
33 >  /DoubleElectron/Run2012A-13Jul2012-v1/AOD   \\
34 >  /DoubleMu/Run2012A-13Jul2012-v1/AOD   \\
35 >  /MuEG/Run2012A-13Jul2012-v1/AOD   \\
36 >  /DoubleElectron/Run2012B-13Jul2012-v1/AOD   \\
37 >  /DoubleMu/Run2012B-13Jul2012-v1/AOD   \\
38 >  /MuEG/Run2012B-13Jul2012-v1/AOD   \\
39 >  /DoubleElectron/Run2012C-PromptReco-v*/AOD   \\        
40 >  /DoubleMu/Run2012C-PromptReco-v*/AOD   \\        
41 >  /MuEG/Run2012C-PromptReco-v*/AOD   \\        
42   \hline
43   \end{tabular}
44   \caption{Summary of data datasets used.\label{tab:DatasetsData}}
# Line 48 | Line 48 | Run2011B SingleElectron PromptReco  &  /
48   \begin{table}[!ht]
49   \begin{center}
50   {\footnotesize
51 < \begin{tabular}{c|c|c}
51 > \begin{tabular}{l|l|c}
52   \hline
53   \multicolumn{3}{c}{With Pileup: Processed dataset name is} \\
54 < \multicolumn{3}{c}{(S) Summer11-PU\_S4\_START42\_V11-v*/AODSIM} \\
55 < \multicolumn{3}{c}{(F) Fall11-PU\_S6\_START42\_V14B-v*/AODSIM} \\
56 < \multicolumn{3}{c}{(S3) Summer11-PU\_S3\_START42\_V11-v*/AODSIM} \\
54 > \multicolumn{3}{c}{(53) Summer12\_DR53X-PU\_S10\_START53\_V7A-v*/AODSIM} \\
55 > \multicolumn{3}{c}{(52) Summer12-START52\_V9\_FSIM-v*/AODSIM} \\
56   \hline
57   Description                     &   Primary Dataset Name   & cross-section [pb]\\
58   \hline
59 < $\ttbar$                                 &   /TTJets\_TuneZ2\_7TeV-madgraph-tauola (F)                            & 157.5 \\
60 < W $\rightarrow$ $\ell\nu$                &   /WJetsToLNu\_TuneZ2\_7TeV-madgraph-tauola (S)                        &  31314.0 \\
61 < WW                                      &  /WW\_TuneZ2\_7TeV\_pythia6\_tauola (S)                       &   45.6\\
62 < WZ                                       &   /WZ\_TuneZ2\_7TeV\_pythia6\_tauola (S)                       &  18.2 \\
63 < ZZ                                       &  /ZZ\_TuneZ2\_7TeV\_pythia6\_tauola (S)                               &  7.4 \\
64 < $t$ ($s$-chan)                           &   /T\_TuneZ2\_s-channel\_7TeV-powheg-tauola (S)                        &  3.19 \\
65 < $\bar{t}$ ($s$-chan)                     &   /Tbar\_TuneZ2\_s-channel\_7TeV-powheg-tauola (S)                      &  1.44 \\
66 < $t$ ($t$-chan)                           &   /T\_TuneZ2\_t-channel\_7TeV-powheg-tauola (S)                         &  41.92 \\
67 < $\bar{t}$ ($t$-chan)                     &   /Tbar\_TuneZ2\_t-channel\_7TeV-powheg-tauola (S)                      &  22.65 \\
68 < $tW$                                     &   /T\_TuneZ2\_tW-channel-DR\_7TeV-powheg-tauola (S)                     &  7.87 \\
69 < $\bar{t} W$                               &   /Tbar\_TuneZ2\_tW-channel-DR\_7TeV-powheg-tauola (S)                  &  7.87 \\
70 < $\dy \To \ell \ell$      & /DYJetsToLL\_TuneZ2\_M-50\_7TeV-madgraph-tauola (S)                   &  3048.0 \\
71 < $\ttbar W$                                       &   /TTW\_TuneZ2\_7TeV-madgraph (S)                   &  0.1633 \\
72 < $\ttbar Z$                                       &   /TTZ\_TuneZ2\_7TeV-madgraph (S)                   &  0.139 \\
73 < $\ttbar \gamma$                      &   /TTPhoton\_TuneZ2\_7TeV-madgraph (S)            &  0.6545 \\
74 < WW$\gamma$      & /WWPhoton\_TuneZ2\_7TeV-madgraph (S)  &       0.177 \\
75 < WWZ     & /WWZNoGstar\_TuneZ2\_7TeV-madgraph (S)        &       0.0268\\
76 < WWW     & /WWW\_TuneZ2\_7TeV-madgraph (S)       &       0.038 \\
77 < WZZ             & /WZZNoGstar\_TuneZ2\_7TeV-madgraph (S)        & 0.0088 \\
78 < ZZZ             & /ZZZNoGstar\_TuneZ2\_7TeV-madgraph (S)        & 0.00288 \\
79 < $\tilde{t}\bar{\tilde{t}}\rightarrow t\bar{t}\chi^0_1\chi^0_1$ & /SMS-T2tt\_Mstop-225to1200\_mLSP-50to1025\_7TeV-Pythia6Z (S)            &  scan\\
80 < $\tilde{t}\bar{\tilde{t}}\rightarrow b\bar{b}\chi^+_1\chi^-_1$ & /SMS-T2bw\_x-0p25to0p75\_mStop-50to850\_mLSP-50to800\_7TeV-Pythia6Z (S)            &  scan \\
81 < \hline
82 < \hline
83 < $\ttbar$ ($Q^2 \times 2$)                                &   /TTjets\_TuneZ2\_scaleup\_7TeV-madgraph-tauola (F)                            & 157.5 \\
84 < $\ttbar$ ($Q^2 \times 0.5$)                             &   /TTjets\_TuneZ2\_scaledown\_7TeV-madgraph-tauola (F)                            & 157.5 \\
85 < $\ttbar$ ($x_q>40~\GeV$)                               &   /TTjets\_TuneZ2\_matchingup\_7TeV-madgraph-tauola (F)                             & 157.5 \\
86 < $\ttbar$ ($x_q>10~\GeV$)                               &   /TTjets\_TuneZ2\_matchingdown\_7TeV-madgraph-tauola (S)                             & 157.5 \\
87 < $\ttbar$ ($m_{\mathrm{top}} = 178.5~\GeV$)       &   /TTJets\_TuneZ2\_mass178\_5\_7TeV-madgraph-tauola (S)                             & 157.5 \\
88 < $\ttbar$ ($m_{\mathrm{top}} = 166.5~\GeV$)       &   /TTJets\_TuneZ2\_mass166\_5\_7TeV-madgraph-tauola (S)                             & 157.5 \\
89 < $\ttbar$                                                         &   /TT\_TuneZ2\_7TeV-powheg-tauola (S)                            & 157.5 \\
90 < $\ttbar \To \ell \ell \nu \nu$                          &   /TTTo2L2Nu2B\_7TeV-powheg-pythia6 (S)                              &  16.5 \\
91 < $\ttbar$                                                         &   /TT\_TuneZ2\_7TeV-mcatnlo (F)                            & 157.5 \\
92 < $\ttbar$                                                         &   /TT\_TuneZ2\_7TeV-pythia6-tauola (S3)                      & 157.5 \\
59 > $\ttbar$                                                         &   /TT\_CT10\_TuneZ2Star\_8TeV-powheg-tauola (53)                            & 225.2 \\
60 > W $\rightarrow$ $\ell\nu$                &   /WJetsToLNu\_TuneZ2Star\_8TeV-madgraph-tauola (53)                        &  37509 \\
61 > W $\rightarrow$ $\ell\nu$+3 jets                 &   /W3JetsToLNu\_TuneZ2Star\_8TeV-madgraph-tauola (53)                        &  640 \\
62 > W $\rightarrow$ $\ell\nu$+$\geq 4$ jets        &   /W4JetsToLNu\_TuneZ2Star\_8TeV-madgraph-tauola (53)                        &  264 \\
63 > WW      & /WWJetsTo2L2Nu\_TuneZ2star\_8TeV-madgraph-tauola (53) &   5.8\\
64 > WZ      & /WZJetsTo3LNu\_TuneZ2\_8TeV-madgraph-tauola (53)              &   1.1\\
65 >        & /WZJetsTo2L2Q\_TuneZ2star\_8TeV-madgraph-tauola (53           &   1.1\\
66 > ZZ      & /ZZJetsTo2L2Nu\_TuneZ2star\_8TeV-madgraph-tauola (53)         &   0.4\\
67 >        & /ZZJetsTo4L\_TuneZ2star\_8TeV-madgraph-tauola (53)            &   0.2\\
68 >        & /ZZJetsTo2L2Q\_TuneZ2star\_8TeV-madgraph-tauola (53           &   2.4\\
69 > $t$ ($s$-chan)                           &   /T\_TuneZ2Star\_s-channel\_8TeV-powheg-tauola (53)                        &  3.9 \\
70 > $\bar{t}$ ($s$-chan)                     &   /Tbar\_TuneZ2Star\_s-channel\_8TeV-powheg-tauola (53)                      &  1.8 \\
71 > $t$ ($t$-chan)                           &   /T\_TuneZ2Star\_t-channel\_8TeV-powheg-tauola (53)                         &  55.5 \\
72 > $\bar{t}$ ($t$-chan)                     &   /Tbar\_TuneZ2Star\_t-channel\_8TeV-powheg-tauola (53)                      &  30.0 \\
73 > $tW$                                     &   /T\_TuneZ2Star\_tW-channel-DR\_8TeV-powheg-tauola (53)                     &  11.2 \\
74 > $\bar{t} W$                               &   /Tbar\_TuneZ2Star\_tW-channel-DR\_8TeV-powheg-tauola (53)                  &  11.2 \\
75 > $\dy \To \ell \ell$      & /DYJetsToLL\_TuneZ2Star\_M-50\_8TeV-madgraph-tarball (53)                   &  3532.8 \\
76 > $\dy \To \ell \ell$+$\geq 4$ jets       & /DY4JetsToLL\_TuneZ2Star\_M-50\_8TeV-madgraph-tarball (53)                   &  27.6 \\
77 > $\ttbar W$                                       &   /TTW\_TuneZ2Star\_8TeV-madgraph (53)                   &  0.23 \\
78 > $\ttbar Z$                                       &   /TTZ\_TuneZ2Star\_8TeV-madgraph (53)                   &  0.21 \\
79 > $\ttbar \gamma$                      &   /TTGJets\_TuneZ2Star\_8TeV-madgraph (53)            &  0.65 \\
80 > WWW     & /WWW\_TuneZ2Star\_8TeV-madgraph (53)  &       0.08 \\
81 > WWZ     & /WWZNoGstar\_TuneZ2Star\_8TeV-madgraph (53)   & 0.06\\
82 > WZZ             & /WZZNoGstar\_TuneZ2Star\_8TeV-madgraph (53)   & 0.01 \\
83 > ZZZ             & /ZZZNoGstar\_TuneZ2Star\_8TeV-madgraph (53)   & 0.02 \\
84 > $\tilde{t}\bar{\tilde{t}}\rightarrow t\bar{t}\chi^0_1\chi^0_1$ & /SMS-T2tt\_FineBin\_Mstop-225to1200\_mLSP-0to1000\_8TeV-Pythia6Z (52)            &  scan\\
85 > $\tilde{t}\bar{\tilde{t}}\rightarrow b\bar{b}\chi^+_1\chi^-_1$ & /SMS-T2bw\_FineBin\_Mstop-100to600\_mLSP-0to500\_8TeV-Pythia6Z (52)            &  scan \\
86 > \hline
87 > \hline
88 > $\ttbar$                                 &   /TTJets\_MassiveBinDECAY\_TuneZ2Star\_8TeV-madgraph-tauola (53)                            & 225.2 \\
89 > $\ttbar$ ($Q^2 \times 2$)                                &   /TTjets\_TuneZ2Star\_scaleup\_8TeV-madgraph-tauola (53)                            & 225.2 \\
90 > $\ttbar$ ($Q^2 \times 0.5$)                             &   /TTjets\_TuneZ2Star\_scaledown\_8TeV-madgraph-tauola (53)                            & 225.2 \\
91 > $\ttbar$ ($x_q>40~\GeV$)                               &   /TTjets\_TuneZ2Star\_matchingup\_8TeV-madgraph-tauola (53)                             & 225.2 \\
92 > $\ttbar$ ($x_q>10~\GeV$)                               &   /TTjets\_TuneZ2Star\_matchingdown\_8TeV-madgraph-tauola (53)                             & 225.2 \\
93 > $\ttbar$ ($m_{\mathrm{top}} = 178.5~\GeV$)       &   /TTJets\_TuneZ2Star\_mass178\_5\_8TeV-madgraph-tauola (53)                             & 225.2 \\
94 > $\ttbar$ ($m_{\mathrm{top}} = 166.5~\GeV$)       &   /TTJets\_TuneZ2Star\_mass166\_5\_8TeV-madgraph-tauola (53)                             & 225.2 \\
95 > %$\ttbar \To \ell \ell \nu \nu$                          &   /TTTo2L2Nu2B\_8TeV-powheg-pythia6 (S3)                              &  16.5 \\
96 > %$\ttbar$                                                        &   /TT\_TuneZ2Star\_8TeV-mcatnlo (S3)                            & 157.5 \\
97 > %$\ttbar$                                                        &   /TT\_TuneZ2Star\_8TeV-pythia6-tauola (S3)                      & 157.5 \\
98   \hline
99   \end{tabular}
100   }
101 < \caption{Summary of Monte Carlo datasets used.\label{tab:DatasetsMC}}
101 > \caption{Summary of Monte Carlo datasets used. CHECK TRIBOSON XSEC
102 > \label{tab:DatasetsMC}}
103   \end{center}
104   \end{table}
105  
106   \begin{table}[!ht]
107   \begin{center}
108 < \begin{tabular}{c}
108 > \begin{tabular}{l}
109   \hline
110   \hline
111   Triggers   \\
112   \hline
113   \hline
114   Single Muon Sample\\
110 \hline
111 \footnotesize{\verb=HLT_IsoMu17_v*=}\\
115   \footnotesize{\verb=HLT_IsoMu24_v*=}\\
116 < \footnotesize{\verb=HLT_IsoMu30_eta2p1_v*=}\\
116 > \footnotesize{\verb=HLT_IsoMu24_eta2p1_v*=}\\
117   \hline
118   Single Electron Sample\\
119   \hline
120 < \footnotesize{\verb=HLT_Ele25_CaloIdVT_TrkIdT_CentralTriJet30_v*=}\\
118 < \footnotesize{\verb=HLT_Ele25_CaloIdVT_TrkIdT_TriCentralJet30_v*=}\\
119 < \footnotesize{\verb=HLT_Ele25_CaloIdVT_CaloIsoT_TrkIdT_TrkIsoT_TriCentralJet30_v*=}\\
120 < \footnotesize{\verb=HLT_Ele25_CaloIdVT_CaloIsoT_TrkIdT_TrkIsoT_TriCentralPFJet30_v*=}\\
121 < \hline
122 < Dimuon Sample\\
123 < \hline
124 < \footnotesize{\verb=HLT_DoubleMu7_v*=}\\
125 < \footnotesize{\verb=HLT_Mu13_Mu7_v*=}\\
126 < \footnotesize{\verb=HLT_Mu13_Mu8_v*=}\\
127 < \footnotesize{\verb=HLT_Mu17_Mu8_v*=}\\
128 < \hline
129 < Electron-Muon Sample\\
120 > \footnotesize{\verb=HLT_Ele27_WP80_v*=}\\
121   \hline
122 < \footnotesize{\verb=HLT_Mu17_Ele8_CaloIdL_v*=}\\
132 < \footnotesize{\verb=HLT_Mu8_Ele17_CaloIdL_v*=}\\
133 < \footnotesize{\verb=HLT_Mu17_Ele8_CaloIdT_CaloIsoVL_v*=}\\
134 < \footnotesize{\verb=HLT_Mu8_Ele17_CaloIdT_CaloIsoVL_v*=}\\
122 > Dilepton Sample (only used for dilepton control regions)\\
123   \hline
124 < Dielectron Sample\\
125 < \hline
126 < \footnotesize{\verb=HLT_Ele17_CaloIdL_CaloIsoVL_Ele8_CaloIdL_CaloIsoVL_v*=}\\
139 < \footnotesize{\verb=HLT_Ele17_CaloIdT_TrkIdVL_CaloIsoVL_TrkIsoVL_Ele8_CaloIdT_TrkIdVL_CaloIsoVL_TrkIsoVL_v*=}\\
124 > \footnotesize{\verb=HLT_Mu17_Mu8_v*=}\\
125 > \footnotesize{\verb=HLT_Mu17_Ele8_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL_v*=}\\
126 > \footnotesize{\verb=HLT_Mu8_Ele17_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL*=}\\
127   \footnotesize{\verb=HLT_Ele17_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL_Ele8_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL_v*=}\\
128   \hline
129   \end{tabular}
130 < \caption{Summary of triggers used.\label{tab:TrigData}}
130 > \caption{Summary of triggers used.
131 > \label{tab:TrigData}}
132   \end{center}
133   \end{table}
134  

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