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Revision 1.2 by claudioc, Fri Oct 29 04:13:42 2010 UTC vs.
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2   \label{sec:yields}
3  
4   The data yields and the MC predictions are given in Table~\ref{tab:yields}.
5 < The MC yields are normalized to 30 pb$^{-1}$ using the cross-sections
6 < from Reference~\cite{ref:xsec} assuming 100\% trigger efficiency {\color{red}
7 < (will have to fix this eventually)}.  As anticipated, the MC predicts
5 > The MC yields are normalized to 34.85 pb$^{-1}$ using the cross-sections
6 > from Reference~\cite{ref:xsec}.
7 > As anticipated, the MC predicts
8   that the preselection is dominated by $t\bar{t}$.  The data yield is
9   in good agreement with the prediction.
10  
11 +
12   \begin{table}[htb]
13   \begin{center}
14 < \caption{\label{tab:yields} Data and Monte Carlo yields for the preselection.
14 > \caption{\label{tab:yields} Data and Monte Carlo yields (34.85~pb$^{-1}$) for the preselection.
15   (ttdil refers to dileptonic $t\bar{t}$ including $t \to W \to \ell$,
16   ttothr are all other $t\bar{t}$ modes).}
17 < \begin{tabular}{|c|c|c|c|c|}
17 > \begin{tabular}{ccccc}
18 > \hline
19 >              Sample   &                $ee$   &            $\mu\mu$   &              $e\mu$   &                 tot  \\
20 > \hline
21 >               ttdil   &    14.85 $\pm$ 0.23   &    17.71 $\pm$ 0.26   &     40.4 $\pm$ 0.39   &    72.95 $\pm$ 0.52  \\
22 >               ttotr   &     0.53 $\pm$ 0.04   &     0.25 $\pm$ 0.03   &     0.96 $\pm$ 0.06   &     1.74 $\pm$ 0.08  \\
23 >               Zjets   &     0.77 $\pm$ 0.24   &      1.16 $\pm$ 0.3   &     0.69 $\pm$ 0.23   &     2.62 $\pm$ 0.45  \\
24 >               wjets   &     0.19 $\pm$ 0.14   &           0 $\pm$ 0   &       0.1 $\pm$ 0.1   &     0.29 $\pm$ 0.17  \\
25 >                  ww   &     0.17 $\pm$ 0.05   &     0.21 $\pm$ 0.05   &     0.41 $\pm$ 0.07   &      0.79 $\pm$ 0.1  \\
26 >                  wz   &     0.04 $\pm$ 0.02   &     0.03 $\pm$ 0.01   &     0.05 $\pm$ 0.02   &     0.13 $\pm$ 0.03  \\
27 >                  zz   &        0.02 $\pm$ 0   &        0.01 $\pm$ 0   &     0.02 $\pm$ 0.01   &     0.05 $\pm$ 0.01  \\
28 >                  tW   &     0.47 $\pm$ 0.02   &     0.52 $\pm$ 0.02   &     1.15 $\pm$ 0.03   &     2.14 $\pm$ 0.04  \\
29 > \hline
30 >         total SM MC   &    17.04 $\pm$ 0.37   &     19.88 $\pm$ 0.4   &    43.79 $\pm$ 0.47   &    80.71 $\pm$ 0.72  \\
31 > \hline
32 >                data   &                  18   &                  24   &                  45   &                  87  \\
33   \hline
34 < Sample & ee    & $\mu\mu$ & $e\mu$      & total \\ \hline
35 < ttdil  & 12.8  & 15.3     &  34.9       & 63.0   \\
20 < ttothr & 0.5   &  0.2     &  0.8        &  1.5   \\
21 < Zjets  & 0.7   &  1.4     &  0.6        &  2.7   \\
22 < Wjets  & 0.17  & 0.00     &  0.08       & 0.25   \\
23 < $WW$   & 0.15  &  0.19    &  0.36       & 0.69   \\
24 < $WZ$   & 0.04  &  0.04    &  0.06       & 0.15   \\
25 < $ZZ$   & 0.01  &  0.01    &  0.02       & 0.05   \\
26 < $tW$   & 0.39  &  0.45    &  0.97       & 1.81      \\
34 >                 LM0   &     8.15 $\pm$ 0.23   &     9.37 $\pm$ 0.25   &    12.64 $\pm$ 0.29   &    30.16 $\pm$ 0.44  \\
35 >                 LM1   &     1.81 $\pm$ 0.04   &     2.05 $\pm$ 0.04   &     1.03 $\pm$ 0.03   &      4.9 $\pm$ 0.06  \\
36   \hline
28 total SM MC (30 pb$^{-1}$) & 14.7 & 17.6 & 37.8 & 70.1     \\ \hline
29 data  (11.1 pb$^{-1}$)     & 7   &  7    & 10   & 24      \\ \hline
37   \end{tabular}
38   \end{center}
39   \end{table}

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