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Revision 1.4 by benhoob, Wed Jun 27 15:56:31 2012 UTC vs.
Revision 1.13 by benhoob, Fri Jan 25 12:25:53 2013 UTC

# Line 7 | Line 7 | In this section we list the datasets, tr
7   events, we use dilepton triggers in the DoubleElectron, DoubleMu, and MuEG datasets.
8   An event in the ee final state is required to pass the dielectron trigger, a
9   $\mu\mu$ event is required to pass the dimuon trigger, while an e$\mu$ event is required to pass at least one
10 < of the two $e-\mu$ cross triggers. The efficiencies of the ee, $\mu\mu$ and e$\mu$ triggers with respect to the
11 < offline selection have been measured as $0.95\pm0.03$, $0.88\pm0.03$, and $0.92\pm0.03$, respectively~\cite{ref:SSAN}.  
10 > of the two $e-\mu$ cross triggers. The efficiencies of the ee and e$\mu$ triggers with respect to the
11 > offline selection with two \pt\ $>$ 20 GeV have been measured as $0.95\pm0.05$, $0.93\pm0.05$, respectively.
12 > The $\mu\mu$ trigger efficiency is $0.90\pm0.05$ for events with two muons satisfying $|\eta|<1$, and $0.81\pm0.05$ otherwise.
13   A sample of \gjets\ events, used as a control sample to estimate the \zjets\
14   background, is selected using a set of single photon triggers.
15 < The golden json of June 24th, corresponding to an integrated luminosity of \lumi, is used.
16 <
17 < {\bf UPDATE LIST OF MC SAMPLES}.
15 > The golden prompt reco json and rereco jsons are merged, yielding an integrated luminosity of \lumi.
16 > %The golden json of Aug 31st, corresponding to an integrated luminosity of 9.7 fb$^{-1}$, is used as the starting point.
17 > %However, due to a bug in the Run2012C-PromptReco-v1 data samples (corresponding to 0.5 fb$^{-1}$), this portion of the data
18 > %is currently excluded but will be added back after it is reprocessed. Thus we currently use a sample corresponding to \lumi.
19 > %All data and MC samples are processed in CMSSW\_5\_3\_2\_patch4.
20  
21   \begin{itemize}
22   \item Datasets
23    \begin{itemize}
24 <  \item \verb=/DoubleElectron/Run2021A-PromptReco-v1/AOD=
25 <  \item \verb=/DoubleMu/Run2021A-PromptReco-v1/AOD=
26 <  \item \verb=/MuEG/Run2021A-PromptReco-v1/AOD=
27 <  \item \verb=/DoubleElectron/Run2021B-PromptReco-v1/AOD=
28 <  \item \verb=/DoubleMu/Run2021B-PromptReco-v1/AOD=
29 <  \item \verb=/MuEG/Run2021B-PromptReco-v1/AOD=
24 >  \item \verb=DoubleElectron=
25 >  \item \verb=DoubleMu=
26 >  \item \verb=MuEG=
27 >  \end{itemize}
28 > \item Datasets
29 >  \begin{itemize}
30 >  \item \verb=Run2012A-13Jul2012-v1=
31 >  \item \verb=Run2012A-recover-06Aug2012-v1=
32 >  \item \verb=Run2012B-13Jul2012-v1=
33 >  \item \verb=Run2012C-24Aug2012-v1=
34 >  \item \verb=Run2012C-PromptReco-v2=
35 >  \item \verb=MuEG_Run2012D-PromptReco-v1=
36    \end{itemize}
37  
38   \item Triggers
# Line 38 | Line 47 | The golden json of June 24th, correspond
47      \item \verb=HLT_Photon75_R9Id90_HE10_Iso40_EBOnly_v*=
48      \item \verb=HLT_Photon90_R9Id90_HE10_Iso40_EBOnly_v*=
49    \end{itemize}
41
42 \item Good run list
43  \begin{itemize}
44    \item \verb=Cert_190456-196531_8TeV_PromptReco_Collisions12_JSON.txt=
45  \end{itemize}
46  
47 \item MC samples
48  \begin{itemize}
49  \item {\footnotesize \verb=/DYJetsToLL_TuneD6T_M-50_7TeV-madgraph-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=}
50 \end{itemize}
50   \end{itemize}
51 +  
52 + \begin{table}[htb]                                                                                                                                                              
53 + \begin{center}                                                                                                                                                
54 + \scriptsize
55 + \caption{\label{tab:mcsamples} List of MC samples.}
56 + \begin{tabular}{l|l|c}  
57 + \hline
58 + \hline
59 + Process & Dataset Name & Cross Section [pb] \\
60 + \hline
61 + \zjets & \verb=/DYJetsToLL_M-50_TuneZ2Star_8TeV-madgraph-tarball/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=   & 3532.8 \\
62 + \hline
63 + \ttbar & \verb=/TTJets_MassiveBinDECAY_TuneZ2star_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM= & 225.2 \\
64 + \hline
65 + ZZ & \verb=/ZZJetsTo4L_TuneZ2star_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=   & 0.1769 \\
66 + & \verb=/ZZJetsTo2L2Q_TuneZ2star_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=     & 2.4487 \\
67 + & \verb=/ZZJetsTo2L2Nu_TuneZ2star_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v3/AODSIM= & 0.3648 \\
68 + \hline
69 + WZ & \verb=/WZJetsTo3LNu_TuneZ2_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=    & 1.0575 \\
70 + & \verb=/WZJetsTo2L2Q_TuneZ2star_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=     & 2.206 \\
71 + \hline
72 + WW & \verb=/WWJetsTo2L2Nu_TuneZ2star_8TeV-madgraph-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=    & 5.8123 \\
73 + \hline
74 + single top & \verb=/T_tW-channel-DR_TuneZ2star_8TeV-powheg-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM= & 11.177 \\
75 +           & \verb=/Tbar_tW-channel-DR_TuneZ2star_8TeV-powheg-tauola/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM= & 11.177 \\
76 + \hline
77 + ttV & \verb=/TTZJets_8TeV-madgraph_v2/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=    & 0.208 \\
78 + & \verb=/TTWJets_8TeV-madgraph/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=    & 0.232 \\
79 + \hline
80 + VVV & \verb=/ZZZNoGstarJets_8TeV-madgraph/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=    & 0.0055 \\
81 + & \verb=/WWWJets_8TeV-madgraph/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=    & 0.08217 \\
82 + & \verb=/WWZNoGstarJets_8TeV-madgraph/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=   & 0.0633 \\
83 + & \verb=/WZZNoGstarJets_8TeV-madgraph/Summer12_DR53X-PU_S10_START53_V7A-v1/AODSIM=   & 0.01922 \\
84 + \hline
85 + \hline
86 + \end{tabular}
87 + \end{center}
88 + \end{table}
89  

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