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Revision: 1.1
Committed: Thu Oct 4 07:24:29 2012 UTC (12 years, 7 months ago) by claudioc
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Branch: MAIN
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claudio

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# User Rev Content
1 claudioc 1.1
2     \subsection{Single Lepton Top MC Modelling Validation from CR2}
3     \label{sec:cr2}
4    
5     IS THIS GOING TO BE DONE WITH A BVETO OR NOT. IF SO, IS IT GOING TO
6     BE CSVL OR CSVM? NEED TO DISCUSS THIS.
7    
8     The \mt\ tail for single-lepton top events (\ttsl\ and single top) is dominated by jet resolution effects. The \W\ cannot be far off-shell because $\mW < \mtop$.
9     The modeling of the \mt\ tail from jet resolution effects is studied using \zjets\ data and MC samples.
10     \Z\ events are selection by requiring 2 good leptons (satisfying ID and isolation requirements) and requiring the \mll\ to be in the range $81-101$ GeV.
11     The negative lepton is treated as a neutrino and so is added to the MET: \met\ $\rightarrow$ \pt(\Lepm) + \met,
12     and the \mt\ is recalculated with the positive lepton \mt(\Lepp, \met).
13     The resulting ``pseudo-\mt'' is dominated by jet resolution effects, since no off-shell
14     \Z\ production enters the sample due to the \mll\ requirement.
15     This section describes how well the MC predicts the tail of ``pseudo-\mt''.
16    
17     The underlying distributions are shown in Fig.~\ref{fig:cr2met}
18     and~\ref{fig:cr2mtrest}. The comparison of data and MC event counts
19     is shown in Table~\ref{tab:cr2yields}. From this table we extract
20     the data to MC scale factors $SFR^{e}_{top}$ and $SFR^{\mu}_{top}$.
21    
22    
23     \begin{table}[!h]
24     \begin{center}
25     \begin{tabular}{l||c|c||c|c|c|c}
26     \hline
27     Sample & CR2PRESEL0 &CR2PRESEL1 & CR2A & CR2B & CR2C & CR2D \\
28     \hline
29     \hline
30     DY MC & $35 \pm 2$ & $30 \pm 2$ & $18 \pm 2$ & $32 \pm 3$ & $12 \pm 2$ & $5 \pm 1$ \\
31     Data - non-DY MC & $65 \pm 9$ & $50 \pm 8$ & $36 \pm 6$ & $49 \pm 7$ & $25 \pm 5$ & $14 \pm 4$ \\
32     \hline
33     Data/MC SF & $1.88 \pm 0.29$ & $1.68 \pm 0.30$ & $1.94 \pm 0.40$ & $1.54 \pm 0.29$ & $2.12 \pm 0.58$ & $2.96 \pm 1.22$ \\
34     \hline
35     \end{tabular}
36     \caption{ Yields in \mt\ tail comparing the MC prediction (after
37     applying SFs) to data. CR2PRESEL refers to a sample with $\met>50$
38     GeV and $\mt>150$ GeV.
39     The uncertainties are statistical only. NEED TO ADD THE SYMBOLS
40     DEFINED IN THE TEXT FOR THESE SCALE FACTORS. IS THIS GOING TO BE
41     DONE SEPARATELY FOR MUONS AND ELECTRONS???
42     \label{tab:cr2yields}}
43     \end{center}
44     \end{table}
45    
46     \begin{figure}[hbt]
47     \begin{center}
48     \includegraphics[width=0.5\linewidth]{plots/CR2plots/met_scaled_nj4_emucomb.pdf}%
49     \includegraphics[width=0.5\linewidth]{plots/CR2plots/met_lepcor_scaled_nj4_emucomb.pdf}
50     \includegraphics[width=0.5\linewidth]{plots/CR2plots/mt_lepcor_scaled_nj4_emucomb.pdf}%
51     \includegraphics[width=0.5\linewidth]{plots/CR2plots/mt_lepcor_scaled_met50_nj4_emucomb.pdf}
52     \caption{
53     Comparison of the \met\ (top, left), pseudo-\met\ (top, right)
54     and pseudo-\mt\ (bottom) distributions in data vs. MC for events
55     satisfying the requirements of CR2, combining both the muon and
56     electron channels. The pseudo-\mt\ distributions are shown
57     before any additional requirements (bottom, left) and after
58     requiring pseudo-\met>50 GeV (bottom, right).
59     \label{fig:cr2met}
60     }
61     \end{center}
62     \end{figure}
63    
64     \begin{figure}[hbt]
65     \begin{center}
66     \includegraphics[width=0.5\linewidth]{plots/CR2plots/mt_lepcor_scaled_met100_nj4_emucomb.pdf}%
67     \includegraphics[width=0.5\linewidth]{plots/CR2plots/mt_lepcor_scaled_met150_nj4_emucomb.pdf}
68     \includegraphics[width=0.5\linewidth]{plots/CR2plots/mt_lepcor_scaled_met200_nj4_emucomb.pdf}%
69     \includegraphics[width=0.5\linewidth]{plots/CR2plots/mt_lepcor_scaled_met250_nj4_emucomb.pdf}
70     \caption{
71     Comparison of the \mt\ distribution in data vs. MC for events
72     satisfying the requirements of CR2, combining both the muon and
73     electron channels. The pseudo-\met\ requirements used are
74     100 GeV (top, left), 150 GeV (top, right), 200 GeV (bottom,
75     left) and 250 GeV (bottom, right).
76     \label{fig:cr2mtrest}
77     }
78     \end{center}
79     \end{figure}
80     \clearpage