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Comparing UserCode/benhoob/cmsnotes/StopSearch/CR5.tex (file contents):
Revision 1.2 by burkett, Thu Oct 4 20:15:46 2012 UTC vs.
Revision 1.5 by vimartin, Tue Oct 9 14:00:42 2012 UTC

# Line 39 | Line 39 | is quite good.  Quantitatively, this is
39  
40   \begin{table}[!h]
41   \begin{center}
42 < \begin{tabular}{l||c|c|c|c}
42 > {\footnotesize
43 > \begin{tabular}{l||c||c|c|c|c|c}
44   \hline
45 < Sample              & CR5A & CR5B & CR5C & CR5D \\
45 > Sample              & CR5PRESEL & CR5A & CR5B & CR5C & CR5D & CR5E\\
46   \hline
47   \hline
48 < Muon pre-veto \mt-SF      & $0.98 \pm 0.02$ & $0.95 \pm 0.04$ & $0.99 \pm 0.08$ & $0.89 \pm 0.15$ \\
49 < Muon post-veto \mt-SF     & $1.28 \pm 0.07$ & $1.20 \pm 0.13$ & $1.22 \pm 0.24$ & $1.25 \pm 0.43$ \\
48 > Muon pre-veto \mt-SF      & $1.05 \pm 0.01$ & $1.02 \pm 0.02$ & $0.95 \pm 0.03$ & $0.90 \pm 0.05$ & $0.98 \pm 0.08$ & $0.97 \pm 0.13$ \\
49 > Muon post-veto \mt-SF     & $1.25 \pm 0.04$ & $1.17 \pm 0.07$ & $1.05 \pm 0.12$ & $0.85 \pm 0.19$ & $0.84 \pm 0.30$ & $1.07 \pm 0.54$ \\
50   \hline
51   \hline
52 < Electron pre-veto \mt-SF          & $0.83 \pm 0.02$ & $0.75 \pm 0.04$ & $0.64 \pm 0.07$ & $0.63 \pm 0.12$ \\
53 < Electron post-veto \mt-SF         & $1.10 \pm 0.08$ & $1.02 \pm 0.11$ & $0.89 \pm 0.19$ & $1.27 \pm 0.41$ \\
52 > Electron pre-veto \mt-SF          & $1.01 \pm 0.01$ & $0.95 \pm 0.02$ & $0.95 \pm 0.03$ & $0.94 \pm 0.06$ & $0.85 \pm 0.09$ & $0.84 \pm 0.13$ \\
53 > Electron post-veto \mt-SF         & $1.21 \pm 0.04$ & $1.12 \pm 0.07$ & $1.25 \pm 0.14$ & $1.17 \pm 0.27$ & $2.01 \pm 0.64$ & $1.71 \pm 0.99$ \\
54   \hline
55 < \end{tabular}
55 > \end{tabular}}
56   \caption{ \mt\ peak Data/MC scale factors. The pre-veto SFs are applied to the
57    \ttdl\ sample, while the post-veto SFs are applied to the single
58    lepton samples. The raw MC is used for backgrounds from rare processes.
# Line 63 | Line 64 | Electron post-veto \mt-SF         & $1.1
64  
65   \begin{table}[!h]
66   \begin{center}
67 < \begin{tabular}{l||c|c|c|c}
67 > {\footnotesize
68 > \begin{tabular}{l||c||c|c|c|c|c}
69   \hline
70 < Sample              & CR5A & CR5B & CR5C & CR5D \\
70 > Sample              & CR5PRESEL & CR5A & CR5B & CR5C & CR5D & CR5E\\
71   \hline
72   \hline
73 < Muon MC                   & $293 \pm 9$ & $161 \pm 7$ & $51 \pm 4$ & $16 \pm 2$ \\
74 < Muon Data                 & $315$ & $165$ & $62$ & $13$ \\
73 > Muon MC                   & $490 \pm 8$ & $299 \pm 6$ & $155 \pm 4$ & $49 \pm 2$ & $19 \pm 1$ & $7 \pm 1$ \\
74 > Muon Data                 & $514$ & $311$ & $167$ & $57$ & $12$ & $4$ \\
75   \hline
76 < Muon Data/MC SF           & $1.07 \pm 0.07$ & $1.03 \pm 0.09$ & $1.21 \pm 0.18$ & $0.82 \pm 0.25$ \\
76 > Muon Data/MC SF           & $1.05 \pm 0.05$ & $1.04 \pm 0.06$ & $1.08 \pm 0.09$ & $1.17 \pm 0.16$ & $0.64 \pm 0.19$ & $0.54 \pm 0.28$ \\
77   \hline
78   \hline
79 < Electron MC               & $253 \pm 8$ & $126 \pm 5$ & $37 \pm 3$ & $12 \pm 2$ \\
80 < Electron Data             & $286$ & $135$ & $39$ & $15$ \\
79 > Electron MC               & $405 \pm 7$ & $239 \pm 5$ & $130 \pm 4$ & $43 \pm 2$ & $16 \pm 2$ & $8 \pm 1$ \\
80 > Electron Data             & $427$ & $248$ & $120$ & $38$ & $14$ & $4$ \\
81   \hline
82 < Electron Data/MC SF       & $1.13 \pm 0.08$ & $1.07 \pm 0.10$ & $1.07 \pm 0.19$ & $1.21 \pm 0.35$ \\
82 > Electron Data/MC SF       & $1.06 \pm 0.05$ & $1.04 \pm 0.07$ & $0.93 \pm 0.09$ & $0.89 \pm 0.15$ & $0.86 \pm 0.24$ & $0.52 \pm 0.27$ \\
83   \hline
84 < \end{tabular}
84 > \end{tabular}}
85   \caption{ Yields in \mt\ tail comparing the MC prediction (after
86    applying SFs) to data. The uncertainties are statistical only.
87   \label{tab:cr5yields}}
# Line 103 | Line 105 | Electron Data/MC SF       & $1.13 \pm 0.
105  
106   \begin{figure}[hbt]
107    \begin{center}
108 +        \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met50_leadmuo_nj4.pdf}%
109 +        \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met50_leadele_nj4.pdf}
110          \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met150_leadmuo_nj4.pdf}%
111          \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met150_leadele_nj4.pdf}
112          \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met200_leadmuo_nj4.pdf}%
113          \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met200_leadele_nj4.pdf}
114 <        \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met250_leadmuo_nj4.pdf}%
115 <        \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met250_leadele_nj4.pdf}
114 > %        \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met250_leadmuo_nj4.pdf}%
115 > %        \includegraphics[width=0.5\linewidth]{plots/CR5plots/mt_met250_leadele_nj4.pdf}
116      \caption{
117        Comparison of the \mt\ distribution in data vs. MC for events
118        with a leading muon (left) and leading electron (right)
119        satisfying the requirements of CR5. The \met\ requirements used are
120 <      150 GeV (top), 200 GeV (middle) and 250 GeV (bottom).
120 >      50 GeV (top), 150 GeV (middle) and 200 GeV (bottom).
121   \label{fig:cr5mtrest}
122   }  
123        \end{center}

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