1 |
claudioc |
1.1 |
\subsection{W+Jets MC Modelling Validation from CR1}
|
2 |
|
|
\label{sec:cr1}
|
3 |
|
|
|
4 |
|
|
|
5 |
|
|
The estimate of the uncertainty on this background is based on CR1,
|
6 |
burkett |
1.2 |
defined by applying the full signal selection, including the isolated track veto, but requiring 0 b-tags
|
7 |
|
|
(CSV medium working point as described in Sec.~\ref{sec:selection}).
|
8 |
claudioc |
1.1 |
The sample is dominanted by \wjets\ and is thus used to validate the MC modelling of this background.
|
9 |
|
|
|
10 |
|
|
In Table~\ref{tab:cr1mtsf} we show the amount that we need to scale the Wjets MC
|
11 |
|
|
by in order to have agreement between data and Monte Carlo in the $M_T$ peak
|
12 |
burkett |
1.2 |
region, defined as $60 < M_T < 100$ GeV. These scale factors are not terribly
|
13 |
vimartin |
1.4 |
important, but it is reassuring that they are not too different from
|
14 |
|
|
1. [UPDATE WITH TRIGGER EFFICIENCIES]
|
15 |
claudioc |
1.1 |
|
16 |
|
|
|
17 |
|
|
\begin{table}[!h]
|
18 |
|
|
\begin{center}
|
19 |
vimartin |
1.3 |
\begin{tabular}{l||c||c|c|c|c|c}
|
20 |
claudioc |
1.1 |
\hline
|
21 |
vimartin |
1.3 |
Sample & CR1PRESEL & CR1A & CR1B & CR1C & CR1D & CR1E\\
|
22 |
claudioc |
1.1 |
\hline
|
23 |
|
|
\hline
|
24 |
vimartin |
1.6 |
Muon \mt-SF & $0.92 \pm 0.02$ & $0.97 \pm 0.03$ & $0.90 \pm 0.04$ & $0.91 \pm 0.06$ & $0.93 \pm 0.09$ & $0.98 \pm 0.13$ \\
|
25 |
claudioc |
1.1 |
\hline
|
26 |
|
|
\hline
|
27 |
vimartin |
1.6 |
Electron \mt-SF & $0.94 \pm 0.02$ & $0.90 \pm 0.04$ & $0.84 \pm 0.05$ & $0.80 \pm 0.07$ & $0.83 \pm 0.10$ & $0.77 \pm 0.13$ \\
|
28 |
claudioc |
1.1 |
\hline
|
29 |
|
|
\end{tabular}
|
30 |
|
|
\caption{ \mt\ peak Data/MC scale factors applied to the single lepton
|
31 |
|
|
samples and \ttdl. The raw MC is used for backgrounds from rare
|
32 |
|
|
processes. CR1PRESEL refers to a sample with $\met>50$ GeV.
|
33 |
|
|
The uncertainties are statistical only.
|
34 |
|
|
\label{tab:cr1mtsf}}
|
35 |
|
|
\end{center}
|
36 |
|
|
\end{table}
|
37 |
|
|
|
38 |
|
|
|
39 |
|
|
In Table~\ref{tab:cr1yields} we compare the data and MC yields in the four $M_T$ signal regions
|
40 |
|
|
and in a looser control region. We also derive the data/MC scale factors
|
41 |
|
|
$SFR^{e}_{wjet}$ and $SFR^{\mu}_{wjet}$. The underlying \met\ and $M_T$ distributions
|
42 |
|
|
are shown in Fig.~\ref{fig:cr1met} and~\ref{fig:cr1mtrest}
|
43 |
|
|
|
44 |
|
|
\begin{table}[!h]
|
45 |
|
|
\begin{center}
|
46 |
vimartin |
1.3 |
{\footnotesize
|
47 |
|
|
\begin{tabular}{l||c||c|c|c|c|c}
|
48 |
claudioc |
1.1 |
\hline
|
49 |
vimartin |
1.3 |
Sample & CR1PRESEL & CR1A & CR1B & CR1C & CR1D & CR1E\\
|
50 |
claudioc |
1.1 |
\hline
|
51 |
|
|
\hline
|
52 |
vimartin |
1.6 |
Muon MC & $480 \pm 22$ & $173 \pm 5$ & $114 \pm 4$ & $40 \pm 2$ & $16 \pm 1$ & $8 \pm 1$ \\
|
53 |
vimartin |
1.3 |
Muon Data & $629$ & $238$ & $139$ & $45$ & $12$ & $8$ \\
|
54 |
claudioc |
1.1 |
\hline
|
55 |
vimartin |
1.6 |
Muon Data/MC SF: ($SFR^{\mu}_{wjet}$) & $1.31 \pm 0.08$ & $1.37 \pm 0.10$ & $1.22 \pm 0.11$ & $1.12 \pm 0.18$ & $0.75 \pm 0.23$ & $0.99 \pm 0.37$ \\
|
56 |
claudioc |
1.1 |
\hline
|
57 |
|
|
\hline
|
58 |
vimartin |
1.6 |
Electron MC & $330 \pm 8$ & $118 \pm 4$ & $79 \pm 3$ & $29 \pm 2$ & $13 \pm 1$ & $5 \pm 1$ \\
|
59 |
|
|
Electron Data & $473$ & $174$ & $100$ & $36$ & $16$ & $5$ \\
|
60 |
claudioc |
1.1 |
\hline
|
61 |
vimartin |
1.6 |
Electron Data/MC SF: ($SFR^e_{wjet}$) & $1.43 \pm 0.07$ & $1.47 \pm 0.12$ & $1.27 \pm 0.14$ & $1.23 \pm 0.22$ & $1.26 \pm 0.34$ & $1.07 \pm 0.51$ \\
|
62 |
claudioc |
1.1 |
\hline
|
63 |
vimartin |
1.3 |
\end{tabular}}
|
64 |
claudioc |
1.1 |
\caption{ Yields in \mt\ tail comparing the MC prediction (after
|
65 |
|
|
applying SFs) to data. CR1PRESEL refers to a sample with $\met>50$
|
66 |
|
|
GeV and $\mt>150$ GeV.
|
67 |
vimartin |
1.3 |
The uncertainties are statistical only.
|
68 |
claudioc |
1.1 |
\label{tab:cr1yields}}
|
69 |
|
|
\end{center}
|
70 |
|
|
\end{table}
|
71 |
|
|
|
72 |
|
|
|
73 |
vimartin |
1.6 |
\begin{table}[!h]
|
74 |
|
|
\begin{center}
|
75 |
|
|
{\footnotesize
|
76 |
|
|
\begin{tabular}{l||c||c|c|c|c|c}
|
77 |
|
|
\hline
|
78 |
|
|
Sample & CR1PRESEL & CR1A & CR1B & CR1C & CR1D & CR1E\\
|
79 |
|
|
\hline
|
80 |
|
|
\hline
|
81 |
|
|
Muon W+jets MC & $300 \pm 23$ & $84 \pm 5$ & $52 \pm 4$ & $20 \pm 2$ & $9 \pm 2$ & $5 \pm 1$ \\
|
82 |
|
|
Muon Data - non-W+jets MC & $449 \pm 26$ & $149 \pm 16$ & $78 \pm 12$ & $25 \pm 7$ & $5 \pm 4$ & $5 \pm 3$ \\
|
83 |
|
|
\hline
|
84 |
|
|
Muon Data/MC SF: ($SFR^{\mu}_{wjet}$) & $1.50 \pm 0.14$ & $1.77 \pm 0.21$ & $1.49 \pm 0.26$ & $1.25 \pm 0.38$ & $0.56 \pm 0.39$ & $0.98 \pm 0.62$ \\
|
85 |
|
|
\hline
|
86 |
|
|
\hline
|
87 |
|
|
Electron W+jets MC & $192 \pm 8$ & $55 \pm 4$ & $36 \pm 3$ & $14 \pm 2$ & $6 \pm 1$ & $3 \pm 1$ \\
|
88 |
|
|
Electron Data - non-W+jets MC & $335 \pm 22$ & $111 \pm 13$ & $58 \pm 10$ & $20 \pm 6$ & $10 \pm 4$ & $3 \pm 2$ \\
|
89 |
|
|
\hline
|
90 |
|
|
Electron Data/MC SF: ($SFR^e_{wjet}$) & $1.74 \pm 0.14$ & $2.02 \pm 0.29$ & $1.58 \pm 0.32$ & $1.49 \pm 0.50$ & $1.50 \pm 0.70$ & $1.10 \pm 0.80$ \\
|
91 |
|
|
\hline
|
92 |
|
|
\end{tabular}}
|
93 |
|
|
\caption{ Yields in \mt\ tail comparing the \wjets\ MC prediction (after
|
94 |
|
|
applying SFs) to data after subtracting the non-\wjets\ component. CR1PRESEL refers to a sample with $\met>50$
|
95 |
|
|
GeV and $\mt>150$ GeV.
|
96 |
|
|
The uncertainties are statistical only.
|
97 |
|
|
\label{tab:cr1wyields}}
|
98 |
|
|
\end{center}
|
99 |
|
|
\end{table}
|
100 |
|
|
|
101 |
|
|
|
102 |
claudioc |
1.1 |
\begin{figure}[hbt]
|
103 |
|
|
\begin{center}
|
104 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/met_met50_leadmuo_nj4.pdf}%
|
105 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/met_met50_leadele_nj4.pdf}
|
106 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met100_leadmuo_nj4.pdf}%
|
107 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met100_leadele_nj4.pdf}
|
108 |
|
|
\caption{
|
109 |
|
|
Comparison of the \met\ (top) and \mt\ for $\met>100$ (bottom) distributions in data vs. MC for events
|
110 |
|
|
with a leading muon (left) and leading electron (right)
|
111 |
|
|
satisfying the requirements of CR1.
|
112 |
|
|
\label{fig:cr1met}
|
113 |
|
|
}
|
114 |
|
|
\end{center}
|
115 |
|
|
\end{figure}
|
116 |
|
|
|
117 |
|
|
|
118 |
|
|
\begin{figure}[hbt]
|
119 |
|
|
\begin{center}
|
120 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met150_leadmuo_nj4.pdf}%
|
121 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met150_leadele_nj4.pdf}
|
122 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met200_leadmuo_nj4.pdf}%
|
123 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met200_leadele_nj4.pdf}
|
124 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met250_leadmuo_nj4.pdf}%
|
125 |
|
|
\includegraphics[width=0.5\linewidth]{plots/CR1plots/mt_met250_leadele_nj4.pdf}
|
126 |
|
|
\caption{
|
127 |
|
|
Comparison of the \mt\ distribution in data vs. MC for events
|
128 |
|
|
with a leading muon (left) and leading electron (right)
|
129 |
|
|
satisfying the requirements of CR1. The \met\ requirements used are
|
130 |
|
|
150 GeV (top), 200 GeV (middle) and 250 GeV (bottom).
|
131 |
|
|
\label{fig:cr1mtrest}
|
132 |
|
|
}
|
133 |
|
|
\end{center}
|
134 |
|
|
\end{figure}
|
135 |
|
|
|
136 |
|
|
\clearpage |