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1 + \clearpage
2  
3   \section{Datasets and Triggers}
4   \label{sec:datasets}
5  
6 < %\subsection{Datasets}
6 > In this section we list the datasets, triggers, and MC samples used in the analysis. For selecting signal
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. Our signal region consists of same-flavor (SF) ee and $\mu\mu$ events, while
11 > opposite-flavor (OF) $e\mu$ events are retained in a control sample used to estimate the
12 > FS contribution as described. A sample of \gjets\ events, used as a control sample to estimate the \zjets\
13 > background, is selected using a set of single photon triggers.
14 > The golden json of June 15th, corresponding to an integrated luminosity of \lumi.
15  
16 < We use the same datasets, triggers, and MC samples as in SUS-11-021. Details can be found in AN-2011/464.
8 < We use a combination of rereco and prompt reco for both signal and control data samples. % leptons and photons.
9 < This data covers the entire Run2011A and Run2011B data taking periods,
10 < and the integrated luminosity corresponds to \lumi.
11 < We select signal events passing one of a set of ee, e$\mu$ or $\mu\mu$ dilepton triggers.
12 < A control sample of \gjets\ events is selected using a set of single photon triggers with varying
13 < photon \pt\ thresholds.
14 < Summer11 monte carlo samples are used.
15 <
16 < \begin{comment}
17 < \\
18 < For selecting the dilepton sample, the following datasets are used (the pythia DY samples are used only for generator level Z mass values less than 50 to avoid overlap with the madgraph DYJets sample), including the benchmark SUSY points LM4 and LM8:
16 > {\bf UPDATE LIST OF MC SAMPLES}.
17  
20
21 \begin{itemize}
22 \item Data
18   \begin{itemize}
19 < \item \verb=/DoubleElectron/Run2011A-May10ReReco-v1/AOD=
20 < \item \verb=/DoubleMu/Run2011A-May10ReReco-v1/AOD=
21 < \item \verb=/MuEG/Run2011A-May10ReReco-v1/AOD=
22 <
23 < \item \verb=/DoubleElectron/Run2011A-PromptReco-v4/AOD=
24 < \item \verb=/DoubleMu/Run2011A-PromptReco-v4/AOD=
25 < \item \verb=/MuEG/Run2011A-PromptReco-v4/AOD=
26 < \end{itemize}
32 <
33 < \item Monte Carlo
34 <  \begin{itemize}
35 <  \item \verb=/DYJetsToLL_TuneD6T_M-50_7TeV-madgraph-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
36 <  \item \verb=/TTJets_TuneZ2_7TeV-madgraph-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
37 <  \item \verb=/WJetsToLNu_TuneZ2_7TeV-madgraph-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
38 <  \item \verb=/WWTo2L2Nu_TuneZ2_7TeV-pythia6/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
39 <  \item \verb=/WZtoAnything_TuneZ2_7TeV-pythia6-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
40 <  \item \verb=/ZZtoAnything_TuneZ2_7TeV-pythia6-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
41 <  \item \verb=/TToBLNu_TuneZ2_s-channel_7TeV-madgraph/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
42 <  \item \verb=/TToBLNu_TuneZ2_t-channel_7TeV-madgraph/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
43 <  \item \verb=/TToBLNu_TuneZ2_tW-channel_7TeV-madgraph/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
44 <  \item Pythia samples:
45 <  \item \verb=/DYToEE_M-20_CT10_TuneZ2_7TeV-powheg-pythia/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
46 <  \item \verb=/DYToMuMu_M-20_CT10_TuneZ2_7TeV-powheg-pythia/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
47 <  \item \verb=/DYToTauTau_M-20_CT10_TuneZ2_7TeV-powheg-pythia-tauola/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
48 <  \item \verb=/DYToEE_M-10To20_TuneZ2_7TeV-pythia6/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
49 <  \item \verb=/DYToMuMu_M-10To20_TuneZ2_7TeV-pythia6/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
50 <  \item LM samples:
51 <  \item \verb=/LM4_SUSY_sftsht_7TeV-pythia6/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
52 <  \item \verb=/LM8_SUSY_sftsht_7TeV-pythia6/Spring11-PU_S1_START311_V1G1-v1/AODSIM=
19 > \item Datasets
20 >  \begin{itemize}
21 >  \item \verb=/DoubleElectron/Run2021A-PromptReco-v1/AOD=
22 >  \item \verb=/DoubleMu/Run2021A-PromptReco-v1/AOD=
23 >  \item \verb=/MuEG/Run2021A-PromptReco-v1/AOD=
24 >  \item \verb=/DoubleElectron/Run2021B-PromptReco-v1/AOD=
25 >  \item \verb=/DoubleMu/Run2021B-PromptReco-v1/AOD=
26 >  \item \verb=/MuEG/Run2021B-PromptReco-v1/AOD=
27    \end{itemize}
54 \end{itemize}
28  
29 < For the creation of photon templates, we use:
29 > \item Triggers
30 >  \begin{itemize}
31 >    \item \verb=HLT_Mu17_Mu8_v*=
32 >    \item \verb=HLT_Mu17_Ele8_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL_v*=
33 >    \item \verb=HLT_Mu8_Ele17_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL*=
34 >    \item {\footnotesize \verb=HLT_Ele17_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL_Ele8_CaloIdT_CaloIsoVL_TrkIdVL_TrkIsoVL_v*=}
35 >    \item \verb=HLT_Photon22_R9Id90_HE10_Iso40_EBOnly_v*=
36 >    \item \verb=HLT_Photon36_R9Id90_HE10_Iso40_EBOnly_v*=
37 >    \item \verb=HLT_Photon50_R9Id90_HE10_Iso40_EBOnly_v*=
38 >    \item \verb=HLT_Photon75_R9Id90_HE10_Iso40_EBOnly_v*=
39 >    \item \verb=HLT_Photon90_R9Id90_HE10_Iso40_EBOnly_v*=
40 >  \end{itemize}
41  
42 < \begin{itemize}
43 < \item \verb=/Photon/Run2011A-May10ReReco-v1/AOD=
44 < \item \verb=/Photon/Run2011A-PromptReco-v4/AOD=
45 < %\item \verb==
42 > \item Good run list
43 >  \begin{itemize}
44 >    \item \verb=Cert_190456-195947_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}
51   \end{itemize}
52  
64 \end{comment}

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