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Revision 1.11 by claudioc, Thu Nov 11 12:34:17 2010 UTC vs.
Revision 1.15 by benhoob, Mon Nov 15 10:00:19 2010 UTC

# Line 1 | Line 1
1   \section{Event Preselection}
2   \label{sec:eventSel}
3 < %{\color{red} This needs to be fixed up -- probably many mistakes present.}\\
4 < As mentioned in the introduction, the preselection is based on the
5 < $t\bar{t}$ analysis.  We select events with two opposite sign isolated
3 > The purpose of the preselection is to define a data sample rich
4 > in $t\bar{t} \to$ dileptons.  We compare the kinematical
5 > properties of this sample with expectations from $t\bar{t}$
6 > Monte Carlo.
7 >
8 > The preselection is based on the
9 > $t\bar{t}$ analysis~\cite{ref:top}.  
10 > We select events with two opposite sign, well-identified and isolated
11   leptons ($ee$, $e\mu$, or $\mu\mu$); one of the leptons must
12   have $P_T > 20$ GeV,
13 < the other one must have $P_T > 10$ GeV. Events consistent with $Z$ are rejected.
13 > the other one must have $P_T > 10$ GeV. Events with dilepton mass
14 > consistent with $Z \to ee/\mu\mu$ are rejected.
15   In case of events with
16   more than two such leptons, we select the pair that maximizes the scalar
17   sum of lepton $P_T$'s.
# Line 13 | Line 19 | There must be two JPT
19   jets of $P_T > 30$ GeV and $|\eta| < 2.5$; the scalar sum of the
20   $P_T$ of all such jets must exceed 100 GeV; jets must pass
21   {\tt caloJetId} and be separated by $\Delta R >$ 0.4 from any
22 < lepton passing the selection.
22 > lepton with $P_T > 10$~GeV passing the selection.
23   Finally $\met > 50$ GeV (we use tcMet). More details are given in the subsections below.
24  
25   \subsection{Event Cleanup}
# Line 75 | Line 81 | requirements:
81  
82   \begin{itemize}
83  
84 < \item $P_T > 10$ GeV.  (The $t\bar{t}$ analysis uses 20 GeV but for
85 < completeness we calculate FR down to 10 GeV).
84 > % \item $P_T > 10$ GeV.  (The $t\bar{t}$ analysis uses 20 GeV but for
85 > % completeness we calculate FR down to 10 GeV).
86  
87   \item $|\eta| < 2.5$.
88  
# Line 131 | Line 137 | the $\mu\mu$ mass.  If this mass is betw
137   \label{sec:trigSel}
138  
139   Because most of the triggers implemented in the 2nd half of the
140 < 2010 run were not implemented in the Monte Carlo, no trigger
141 < selection is applied on Monte Carlo data.  As discussed in
140 > 2010 run were not implemented in the Monte Carlo,
141 > we do not make any requirements on HLT bits in the Monte Carlo.
142 > Instead, as discussed in
143   Section~\ref{sec:trgEff}, a trigger efficiency weight is applied
144   to each event, based on the trigger efficiencies measured on data.
145   Trigger efficiency weights are very close to 1.
# Line 194 | Line 201 | or $e-\mu$ cross trigger.
201    \item \verb=HLT_Ele17_SW_CaloEleId_L1R=
202    \item \verb=HLT_Ele17_SW_EleId_L1R=
203    \item \verb=HLT_Ele17_SW_LooseEleId_L1R=
204 +  \item \verb=HLT_Ele17_SW_TighterEleIdIsol_L1R_v1=
205    \item \verb=HLT_Ele17_SW_TighterEleIdIsol_L1R_v2=
206 +  \item \verb=HLT_Ele17_SW_TighterEleIdIsol_L1R_v3=
207    \item \verb=HLT_Ele20_SW_L1R=
208    \item \verb=HLT_Ele22_SW_TighterEleId_L1R_v2=
200  \item \verb=HLT_Ele32_SW_TightCaloEleIdTrack_L1R_v1=
201  \item \verb=HLT_Ele32_SW_TighterEleId_L1R_v2=
202  \item \verb=HLT_Ele27_SW_TightCaloEleIdTrack_L1R_v1=
203  \item \verb=HLT_Ele22_SW_TighterCaloIdIsol_L1R_v2=
209    \item \verb=HLT_Ele22_SW_TighterEleId_L1R_v3=
210    \item \verb=HLT_Ele22_SW_TighterCaloIdIsol_L1R_v2=
211 +  \item \verb=HLT_Ele27_SW_TightCaloEleIdTrack_L1R_v1=
212 +  \item \verb=HLT_Ele32_SW_TightCaloEleIdTrack_L1R_v1=
213 +  \item \verb=HLT_Ele32_SW_TighterEleId_L1R_v1=
214 +  \item \verb=HLT_Ele32_SW_TighterEleId_L1R_v2=
215    \end{itemize}
216   \item double-electron triggers
217    \begin{itemize}
218    \item \verb=HLT_DoubleEle15_SW_L1R_v1=                
219    \item \verb=HLT_DoubleEle17_SW_L1R_v1=  
220    \item \verb=HLT_Ele17_SW_TightCaloEleId_Ele8HE_L1R_v1=
221 +  \item \verb=HLT_Ele17_SW_TightCaloEleId_Ele8HE_L1R_v2=
222    \item \verb=HLT_Ele17_SW_TightCaloEleId_SC8HE_L1R_v1=
223    \item \verb=HLT_DoubleEle10_SW_L1R=
224    \item \verb=HLT_DoubleEle5_SW_L1R=
# Line 219 | Line 229 | or $e-\mu$ cross trigger.
229    \item \verb=HLT_Mu5_Ele9_v1=
230    \item \verb=HLT_Mu11_Ele8_v1=
231    \item \verb=HLT_Mu8_Ele8_v1=
232 +  \item \verb=HLT_Mu5_Ele13_v1=
233    \item \verb=HLT_Mu5_Ele13_v2=
234    \item \verb=HLT_Mu5_Ele17_v1=
235 +  \item \verb=HLT_Mu5_Ele17_v2=
236    \end{itemize}
237   \end{itemize}

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