1 |
|
\section{Event reconstruction} |
2 |
|
\label{sec:eventReconstruction} |
3 |
|
|
4 |
< |
The four possible final states of \WZ |
5 |
< |
production with electrons and muons in the final state are studied, $\rm e^\pm \epem$, $\mu^\pm \epem$, $\rm e^\pm \mu^+\mu^-$ |
6 |
< |
and $\mu^\pm \mu^+\mu^-$. They are associated to four possible classes, |
7 |
< |
denoted as follows: |
4 |
> |
We categorize \WZ\ three-lepton final state as following |
5 |
|
\begin{itemize} |
6 |
|
\item $3e$: for \WZ events with $\W \to e \nu$ and $\Z\to \epem$. |
7 |
|
\item $2e1\mu$: for \WZ events with $\W \to \mu \nu$ and $\Z\to \epem$. |
16 |
|
are collected by the electron and/or muon triggers. For each channel, |
17 |
|
a minimun number of HLT requirements is chosen while keeping |
18 |
|
the HLT efficiency for selected events close to 100\%. The same |
19 |
< |
HLT requirements are used for channels with the same Z decay mode: |
19 |
> |
HLT requirements are used for channels with the same \Z decay mode: |
20 |
|
\begin{itemize} |
21 |
|
\item for $3e$ and $2e1\mu$: HLTSingleElectron or HLTDoubleElectronRelaxed |
22 |
|
\item for $2\mu1e$ and $3\mu$: HLTSingleMuonIso |
24 |
|
The HLT efficiencies for all modes for events passing the full |
25 |
|
selection described in this section are given in table~\ref{tab:hlteff}. |
26 |
|
|
30 |
– |
|
27 |
|
\begin{table}[tbph] |
28 |
|
\begin{center} |
29 |
|
|
37 |
|
|
38 |
|
\end{center} |
39 |
|
\caption{HLT Efficiencies, in percent, for all |
40 |
< |
the events in the generated phase space for events retained by |
40 |
> |
the events in the generated phase space that have been retained by |
41 |
|
the complete event selection.} |
42 |
|
\label{tab:hlteff} |
43 |
|
\end{table} |
44 |
|
|
45 |
+ |
|
46 |
+ |
\begin{figure}[tbp] |
47 |
+ |
\begin{center} |
48 |
+ |
\scalebox{0.7}{\includegraphics{figs/mu_isol.eps}} |
49 |
+ |
\caption{Muon isolation variables for the muon associated |
50 |
+ |
to the \W boson decay in $2e1\mu$ events: in the left plot |
51 |
+ |
we illustrate the sum of calorimetric energy in a $\Delta R=0.3$ cone |
52 |
+ |
around the muon candidate; in the right plot we display the sum of |
53 |
+ |
transverse momenta of tracks within a $\Delta R = 0.25$ cone around |
54 |
+ |
the muon candidate. The normalization of signal and background |
55 |
+ |
distributions is arbitrary. |
56 |
+ |
} |
57 |
+ |
\label{fig:mu_isol} |
58 |
+ |
\end{center} |
59 |
+ |
\end{figure} |
60 |
+ |
|
61 |
+ |
\begin{figure}[tb] |
62 |
+ |
\begin{center} |
63 |
+ |
\scalebox{0.6}{\includegraphics{figs/mu_SIP.eps}} |
64 |
+ |
\caption{ |
65 |
+ |
Muon impact parameter significance distribution |
66 |
+ |
in $2e1\mu$ events. The normalization of signal and background |
67 |
+ |
distributions is arbitrary. |
68 |
+ |
} |
69 |
+ |
\label{fig:mu_SIP} |
70 |
+ |
\end{center} |
71 |
+ |
\end{figure} |
72 |
+ |
|
73 |
+ |
|
74 |
|
\subsection{Lepton identification} |
75 |
|
\label{sec:leptonId} |
76 |
|
|
78 |
|
in~\cite{noteElectronID}. |
79 |
|
|
80 |
|
Muon candidates are selected from global muons, which are reconstructed |
81 |
< |
combining measurements in the muon chambers and the central tracker. |
82 |
< |
An additional isolation criterion requires that the energy |
81 |
> |
by combining measurements in the muon chambers and the central tracker. |
82 |
> |
An additional isolation criterion is imposed to require the energy |
83 |
|
measured in the calorimeters within a $\Delta R = 0.3$ cone around the |
84 |
< |
muon must be smaller than 3 GeV and the sum of the $p_t$ of tracks |
85 |
< |
within a $\Delta R = 0.25$ cone around the muon must be smaller than 2 \gev. |
84 |
> |
muon to be smaller than 3 GeV and the sum of the $p_T$ of tracks |
85 |
> |
within a $\Delta R = 0.25$ cone around the muon must be smaller than 2 GeV. |
86 |
|
These cuts reduce the background from muons originated in |
87 |
|
\b-quark decays of the $\Zbbbar$ background, which are close to tracks |
88 |
|
and clusters from the other \b-quark decay products. |
94 |
|
|
95 |
|
The significance of the muon impact parameter in the plane |
96 |
|
transverse to the beam, $S_{IP}$, discriminates against leptons from |
97 |
< |
heavy-quark decays in all Standard Model background processes. This |
97 |
> |
heavy-quark decays in all standard model background processes. This |
98 |
|
variable is defined as the ratio between the measured impact parameter |
99 |
|
and its uncertainty: $S_{IP}=IP/\sigma_{IP}$, and is required to |
100 |
< |
satisfy $S_{IP}<3$. This requirement is applied only for muons |
101 |
< |
and not for electrons. For electrons, a significant fraction of the |
102 |
< |
background comes from fake electrons and not from heavy quark decays, |
103 |
< |
and a cut on the impact parameter significance shows no improvement |
104 |
< |
in significance there. |
100 |
> |
satisfy $S_{IP}<3$. This requirement is applied only for muon candidates |
101 |
> |
and not for electrons. For electron candidates, a significant fraction of the |
102 |
> |
background comes from misidentified light quark jets. Thus, |
103 |
> |
the requirement on the impact parameter significance does not |
104 |
> |
increase the significance of the $\W\to e$ channels, as can be seen in |
105 |
> |
Fig.~\ref{fig:wl_IP_SvsCut}. |
106 |
|
|
107 |
+ |
\begin{figure}[p] |
108 |
+ |
\begin{center} |
109 |
+ |
\scalebox{0.6}{\includegraphics{figs/wl_IP_eff.eps}} |
110 |
+ |
\caption{Efficiency for signal and background as a function |
111 |
+ |
of the requirement on the \W-boson lepton impact parameter |
112 |
+ |
significance. All other criteria but the one on impact parameter |
113 |
+ |
significance are applied. |
114 |
+ |
% Only events with 81.1 GeV $< M_Z < $ 101.1 \gev |
115 |
+ |
% are considered. |
116 |
+ |
} |
117 |
+ |
\label{fig:wl_IP_eff} |
118 |
+ |
\end{center} |
119 |
+ |
%\end{figure} |
120 |
+ |
|
121 |
+ |
%\begin{figure}[bt] |
122 |
+ |
\begin{center} |
123 |
+ |
\scalebox{0.6}{\includegraphics{figs/wl_IP_SvsCut.eps}} |
124 |
+ |
\caption{Signal significance as a function of requirement on |
125 |
+ |
the \W-boson lepton impact parameter significance. All other criteria but |
126 |
+ |
the requirement on the impact parameter significance are applied. |
127 |
+ |
% Only events with 81.1 GeV $< M_Z < $ 101.1 \gev are considered. |
128 |
+ |
} |
129 |
+ |
\label{fig:wl_IP_SvsCut} |
130 |
+ |
\end{center} |
131 |
+ |
\end{figure} |
132 |
|
|
133 |
|
|
134 |
|
\begin{table}[tbp] |
135 |
|
\begin{tabular}{|l|c|c|c|c|} \hline |
136 |
|
& $3e$ & $2e1\mu$ & $2\mu 1e$ & $3\mu$ \\ \hline \hline |
137 |
|
\multicolumn{5}{|c|}{Lepton selection} \\ \hline |
138 |
< |
Electrons & \multicolumn{3}{|c|}{{\tt SimpleLoose} requirements for Z reconstruction} & \\ |
139 |
< |
& \multicolumn{3}{|c|}{{\tt SimpleTight} requirements for W} & \\ \hline |
138 |
> |
Electrons & \multicolumn{3}{|c|}{{\tt SimpleLoose} requirements for \Z reconstruction} & \\ |
139 |
> |
& \multicolumn{3}{|c|}{{\tt SimpleTight} requirements for \W} & \\ \hline |
140 |
|
Muons & & \multicolumn{3}{|c|}{ Track Isolation:$ {\tt IsoTrack}(\Delta R= 0.25) < 2 \gev$} \\ |
141 |
|
& & \multicolumn{3}{|c|}{ Calorimetric Isolation:$ {\tt IsoCalo}(\Delta R = 0.3) < 5 \gev$} \\ |
142 |
|
& & \multicolumn{3}{|c|}{$S_{IP}=IP/\sigma_{IP}<3$ } \\ \hline |
143 |
|
HLT requirement & \multicolumn{2}{|c|}{ HLTSingleElectron or HLTDoubleElectronRelaxed} |
144 |
|
& \multicolumn{2}{|c|}{ HLTSingleMuonIso} \\ \hline |
145 |
< |
\multicolumn{5}{|c|}{Z reconstruction} \\ \hline |
146 |
< |
Lepton cuts & \multicolumn{4}{|c|}{for both Z leptons: $p_t > 15 GeV$} \\ |
145 |
> |
\multicolumn{5}{|c|}{\Z reconstruction} \\ \hline |
146 |
> |
Lepton cuts & \multicolumn{4}{|c|}{for both \Z leptons: $p_T > 15$ GeV} \\ |
147 |
|
Mass window & \multicolumn{4}{|c|}{$50 \gev < M_Z < 120 \gev $ } \\ |
148 |
< |
Second Z veto & \multicolumn{4}{|c|}{No independent second Z candidate with $50 \gev < M_Z < 120 \gev $ } \\ \hline |
149 |
< |
\multicolumn{5}{|c|}{W lepton selection} \\ \hline |
148 |
> |
Second \Z veto & \multicolumn{4}{|c|}{No independent second \Z candidate with $50 \gev < M_Z < 120 \gev $ } \\ \hline |
149 |
> |
\multicolumn{5}{|c|}{\W lepton selection} \\ \hline |
150 |
|
|
151 |
|
Other cuts & & & $\Delta R(\mu_Z,e_W)>0.1$ & \\ \hline |
152 |
|
Signal region & \multicolumn{4}{|c|}{$81 \gev < M_Z < 101 \gev $ } \\ \hline \hline |
153 |
|
|
154 |
|
\end{tabular} |
155 |
< |
\caption{Summary of all cuts used in the WZ selection} |
155 |
> |
\caption{Summary of the criteria we use to select \WZ\ final state} |
156 |
|
\label{tab:allcuts} |
157 |
|
\end{table} |
158 |
|
|
184 |
|
\subsection{\WZ candidate selection} |
185 |
|
|
186 |
|
Events are accepted if they contain at least three charged leptons, |
187 |
< |
either electrons or muons, with $p_t > 15\,\mathrm{GeV}$ and $| \eta | < 2.5$ for |
188 |
< |
electrons,$| \eta | < 2.4$ for muons. |
138 |
< |
as discussed in~\ref{sec:leptonId}. |
187 |
> |
either electrons or muons, with $p_T > 15\,\mathrm{GeV}$ and $| \eta | < 2.5$ for |
188 |
> |
electrons,$| \eta | < 2.4$ for muons, as discussed in Section~\ref{sec:leptonId}. |
189 |
|
|
190 |
|
The \WZ candidate selection proceeds from building all possible |
191 |
|
\Z-boson candidates from same-flavour opposite-charge lepton pairs. |
192 |
< |
For $\Z \to ee$ decays, electrons have to fullfil the loose requirements |
192 |
> |
For $\Z \to ee$ decays, electron candidates have to fulfill the loose requirements |
193 |
|
defined in~\cite{noteElectronID}. |
194 |
|
|
195 |
< |
Events are retained if the mass of this \Z-boson candidate is |
196 |
< |
within 20 GeV of the Z-boson mass,$m_Z$. The event is |
197 |
< |
rejected if a second Z candidate is found. This second Z candidate is done |
198 |
< |
with all possible same-flavour opposite-charge combinations which are left |
199 |
< |
after removing the two leptons already used for the first Z candidate. This |
200 |
< |
veto on the presence of a second Z helps to suppress $ZZ$ events. The invariant |
201 |
< |
mass distribution for accepted \Z candidates is shown in |
202 |
< |
Figure~\ref{fig:zcandidates}. |
195 |
> |
Events are retained if the mass of the \Z boson candidate is |
196 |
> |
within 20 GeV of the \Z boson mass, $m_Z$. The event is |
197 |
> |
rejected if a second \Z candidate is found. This second \Z boson candidate is formed |
198 |
> |
using all possible same-flavour opposite-charge combinations which are left |
199 |
> |
after removing the two leptons already used for the first \Z boson candidate. This |
200 |
> |
secondary \Z boson veto helps to suppress $\Z\Z$ events. |
201 |
> |
%The invariant |
202 |
> |
%mass distribution for accepted \Z candidates is shown in |
203 |
> |
%Figure~\ref{fig:zcandidates}. |
204 |
|
|
205 |
|
% and the \Z mass resolution is shown in |
206 |
|
%Figure~\ref{fig:dzmass}. |
207 |
|
|
208 |
< |
After the \Z-boson candidate is identified, the lepton associated |
209 |
< |
to the \W-boson decay is chosen from the remaining electrons and muons |
210 |
< |
in the event that have not been used for reconstructing the \Z-boson. |
211 |
< |
Electrons are required to pass the tight criteria described in |
212 |
< |
\cite{noteElectronID}. If the event contains more than three leptons, |
213 |
< |
the highest $p_t$ is chosen as the one from the \W-boson decay, and |
214 |
< |
the additional leptons are not considered further. |
215 |
< |
The transverse momentum of this lepton is required to be larger |
216 |
< |
than 20 GeV. This last requirement is effective in rejecting |
217 |
< |
the \Zbbbar and \Zjets backgrounds, see Figure~\ref{fig:wlpt_cuteff}, |
218 |
< |
and the cut value is chosen in |
219 |
< |
the range that maximises the significance as shown in |
220 |
< |
Figure~\ref{fig:wlpt_cutS}. |
221 |
< |
|
222 |
< |
An additional requirement on the isolation between electron and muons is applied |
172 |
< |
for the $2\mu 1e$ channel, by demanding $\Delta R$ between the electron associated |
173 |
< |
to the \W-decay and any of the two muons associated to the \Z-decay be greater than |
174 |
< |
0.1. This requirement allows to suppress the contributions of $\Z \to \mu\mu$ |
208 |
> |
After the \Z boson candidate is identified, the remaining leptons in the event |
209 |
> |
are required to pass the tight criteria described in~\cite{noteElectronID}. |
210 |
> |
If more than one lepton candidate satisfies the tight requirements, the one with the |
211 |
> |
highest $p_T$ is associated with \W boson decay. This lepton's $p_T$ is effective |
212 |
> |
discriminant against \Zbbbar and \Zjets production (see Fig.~\ref{fig:wlpt_cuteff}). |
213 |
> |
We require the transverse momentum to exceed 20 GeV, as it maximizes |
214 |
> |
the significance of the \WZ\ signal with respect to background as shown in |
215 |
> |
Fig.~\ref{wlpt_cuteff}. |
216 |
> |
|
217 |
> |
An additional requirement on the isolation between electron and muon candidates is applied |
218 |
> |
for the $2\mu 1e$ channel, by demanding the value of $\Delta R$ between the electron |
219 |
> |
candidate associated with the \W boson decay and any of the two muons associated with |
220 |
> |
the \Z boson decay to be greater than 0.1. |
221 |
> |
|
222 |
> |
This requirement allows suppressing the contribution of $\Z \to \mu\mu$ |
223 |
|
decays, where one of the two muons radiates a photon which is reconstructed |
224 |
< |
as electrons, possibly after conversion, which shows up as a peak at around 60 GeV |
225 |
< |
in the Z mass distribution, as shown in figure~\ref{fig:Z2mu1e_60GeVPeak}. |
224 |
> |
as an electron, possibly after conversion. This can be seen as a peak in the dimuon |
225 |
> |
invariant mass at around 60 GeV in Fig.~\ref{fig:Z2mu1e_60GeVPeak}. |
226 |
|
|
227 |
< |
The summary of the selection can be seen in Table~\ref{tab:allcuts}. |
227 |
> |
The summary of the selection criteria is given in Table~\ref{tab:allcuts}. |
228 |
|
|
229 |
< |
The expected number of events passing the various steps of the selection |
230 |
< |
is listed in Tables~\ref{tab:sel-effA} and~\ref{tab:sel-effB}. |
231 |
< |
Table~\ref{tab:wz-effimatrix} lists the final selection efficiency for |
232 |
< |
the different generated \W and \Z decays. It can be seen there that \WZ\ |
233 |
< |
events with both the \W and the \Z boson decaying into electrons or muons |
234 |
< |
almost always get reconstructed with the correct flavour. It is to be |
235 |
< |
noted in addition that each of our four selection channels gets a small |
236 |
< |
contribution from $W \to \tau \to e/\mu$ decays as one would expect. The |
237 |
< |
selection efficiency for these events is however smaller which is mostly due |
238 |
< |
to the \pt cut on the third lepton, since the \pt spectrum of electrons or |
239 |
< |
muons from $W \to \tau \to e/\mu$ decays is softer. |
229 |
> |
The expected number of the events satisfying the sequential steps of the selection |
230 |
> |
is listed in Tables~\ref{tab:sel-effA}. |
231 |
> |
In Table~\ref{tab:wz-effimatrix} we list the total selection efficiency for different |
232 |
> |
\W and \Z boson decay modes. It can be seen lepton candidates from \W and \Z |
233 |
> |
boson decays are almost always are reconstructed with the correct flavor. As expected, |
234 |
> |
there is a small contribution from $\W \to \tau \nu_\tau \to \ell \nu_\ell \nu_\tau$ |
235 |
> |
decays. However, this contribution is suppressed, mostly due to $p_T$ requirement |
236 |
> |
on the third lepton, as leptons from $\tau$ decays are not as energetic as those from |
237 |
> |
$\W \to \ell \nu$ processes. |
238 |
> |
|
239 |
> |
In Tables~ref\label{tab:wz-matcheffi-Zee} and \label{tab:wz-matcheffi-Zmumu} we |
240 |
> |
display the fraction of reconstructed \WZ events with correctly-matched leptons. |
241 |
> |
It can be seen that the lepton associated with the \W boson decay is correctly matched |
242 |
> |
to the true Monte Carlo lepton from the \W boson decay in more than 90\% of |
243 |
> |
the cases, even for events with several lepton candidates available to be associated |
244 |
> |
to the \W boson decay. The choice to take the lepton candidate with the leading $p_T$ is, |
245 |
> |
therefore, justified. |
246 |
|
|
247 |
|
\begin{table}[p] |
248 |
|
\begin{center} |
250 |
|
|
251 |
|
|
252 |
|
|
253 |
< |
\begin{tabular}{lcccc} \hline |
254 |
< |
\multicolumn{5}{c}{ {\bf $3e$ Channel}} \\ \hline \hline |
255 |
< |
Step & WZ & bbll & Z+jets & TTbar+jets\\ \hline |
256 |
< |
All events & 546 & 72770.4 & 1.2679e+06 & 17556.1 \\ |
257 |
< |
Found $Z \to ee$ & 204.969 (37.5401 \%) & 27800.5 (38.203 \%) & 502344 (39.62 \%) & 2920.59 (16.6357 \%) \\ |
258 |
< |
Found $W \to e$ & 41.9925 (20.4872 \%) & 171.053 (0.615286 \%) & 309.563 (0.0616238 \%) & 13.8293 (0.473511 \%) \\ |
259 |
< |
W Lepton Pt cut & 34.8561 (83.0056 \%) & 23.7161 (13.8648 \%) & 86.7924 (28.037 \%) & 8.25515 (59.6931 \%) \\ |
260 |
< |
Passes HLT & 34.7185 (99.6052 \%) & 23.5679 (99.375 \%) & 86.7924 (100 \%) & 8.25515 (100 \%) \\ |
261 |
< |
Z mass window & 31.5533 (90.8834 \%) & 17.4906 (74.2138 \%) & 51.8927 (59.7894 \%) & 3.2585 (39.4724 \%) \\ \hline |
262 |
< |
Overall efficiency & 5.77899 \% & 0.0240354 \% & 0.00409279 \% & 0.0185605 \% \\ |
263 |
< |
\hline |
264 |
< |
\end{tabular} |
265 |
< |
\begin{tabular}{lcccc} \hline |
266 |
< |
\multicolumn{5}{c}{ {\bf $2e1\mu$ Channel}} \\ \hline \hline |
267 |
< |
Step & WZ & bbll & Z+jets & \ttjets\\ \hline |
268 |
< |
All events & 546 & 72770.4 & 1.2679e+06 & 17556.1 \\ |
269 |
< |
Found $Z \to ee$ & 204.969 (37.5401 \%) & 27800.5 (38.203 \%) & 502344 (39.62 \%) & 2920.59 (16.6357 \%) \\ |
270 |
< |
Found $W \to \mu$ & 47.9099 (23.3743 \%) & 747.725 (2.68961 \%) & 2194.09 (0.436771 \%) & 56.7645 (1.9436 \%) \\ |
271 |
< |
W Lepton Pt cut & 37.0973 (77.4313 \%) & 9.63467 (1.28853 \%) & 9.57604 (0.436446 \%) & 17.5382 (30.8965 \%) \\ |
272 |
< |
Passes HLT & 36.1929 (97.5623 \%) & 9.26411 (96.1538 \%) & 8.32189 (86.9033 \%) & 15.2488 (86.9457 \%) \\ |
273 |
< |
Z mass window & 32.5166 (89.8425 \%) & 8.15242 (88 \%) & 7.31467 (87.8968 \%) & 4.91533 (32.2343 \%) \\ \hline |
274 |
< |
Overall efficiency & 5.95542 \% & 0.0112029 \% & 0.000576911 \% & 0.0279978 \% \\ |
275 |
< |
\hline |
276 |
< |
\end{tabular} |
277 |
< |
|
278 |
< |
\begin{tabular}{lcccc} \hline |
279 |
< |
\multicolumn{5}{c}{ {\bf $2\mu1e$ Channel}} \\ \hline \hline |
280 |
< |
Step & WZ & bbll & Z+jets & TTbar+jets\\ \hline |
281 |
< |
All events & 546 & 72770.4 & 1.2679e+06 & 17556.1 \\ |
282 |
< |
Found $Z \to \mu\mu$ & 233.75 (42.8114 \%) & 31889.4 (43.8219 \%) & 577257 (45.5284 \%) & 2778.81 (15.8282 \%) \\ |
283 |
< |
Found $W \to e$ & 48.7553 (20.8579 \%) & 213.519 (0.669562 \%) & 701.695 (0.121557 \%) & 15.1085 (0.543704 \%) \\ |
284 |
< |
W Lepton Pt cut & 40.6556 (83.3871 \%) & 50.6191 (23.707 \%) & 464.493 (66.196 \%) & 10.2745 (68.0047 \%) \\ |
285 |
< |
$\Delta R(e,\mu)$ cut & 40.5573 (99.7582 \%) & 23.3456 (46.1201 \%) & 92.9813 (20.0178 \%) & 7.14967 (69.5865 \%) \\ |
286 |
< |
Passes HLT & 39.4171 (97.1886 \%) & 23.1973 (99.3651 \%) & 88.7791 (95.4806 \%) & 6.6245 (92.6546 \%) \\ |
287 |
< |
Z mass window & 35.5638 (90.2244 \%) & 18.8988 (81.4696 \%) & 50.2509 (56.6022 \%) & 2.84083 (42.8837 \%) \\ \hline |
288 |
< |
Overall efficiency & 6.51352 \% & 0.0259704 \% & 0.00396331 \% & 0.0161814 \% \\ |
289 |
< |
\hline |
290 |
< |
\end{tabular} |
291 |
< |
|
292 |
< |
|
293 |
< |
\begin{tabular}{lcccc} \hline |
294 |
< |
\multicolumn{5}{c}{ {\bf $3\mu$ Channel}} \\ \hline \hline |
295 |
< |
Step & WZ & bbll & Z+jets & TTbar+jets\\ \hline |
296 |
< |
All events & 546 & 72770.4 & 1.2679e+06 & 17556.1 \\ |
243 |
< |
Found $Z \to \mu\mu$ & 233.75 (42.8114 \%) & 31889.4 (43.8219 \%) & 577257 (45.5284 \%) & 2778.81 (15.8282 \%) \\ |
244 |
< |
Found $W \to \mu$ & 57.7986 (24.7267 \%) & 810.721 (2.54229 \%) & 2520.69 (0.436668 \%) & 35.3061 (1.27054 \%) \\ |
245 |
< |
W Lepton Pt cut & 44.2533 (76.5646 \%) & 8.89355 (1.09699 \%) & 1.84115 (0.0730414 \%) & 1.683 (4.76688 \%) \\ |
246 |
< |
Passes HLT & 43.9977 (99.4225 \%) & 8.89355 (100 \%) & 1.84115 (100 \%) & 1.683 (100 \%) \\ |
247 |
< |
Z mass window & 40.0462 (91.0188 \%) & 7.78185 (87.5 \%) & 1.84115 (100 \%) & 1.15783 (68.7957 \%) \\ \hline |
248 |
< |
Overall efficiency & 7.33446 \% & 0.0106937 \% & 0.000145212 \% & 0.00659501 \% \\ |
253 |
> |
\begin{tabular}{lcc|cc|cc|cc|c} \hline \hline |
254 |
> |
\multicolumn{9}{c}{ {\bf $3e$ Channel}} \\ \hline \hline |
255 |
> |
Step & \WZ & $\epsilon$ & $b\bar{b}\ell\ell$ & $\epsilon$ & $\Z+jets$ & $\epsilon$ & $t\bar{t}+jets$ & $\epsilon$ \\ \hline |
256 |
> |
All events & 546 & & 72,700 & & 1,268,000 & & 17,600 & \\ |
257 |
> |
Found $\Z \to ee$ & 205 & 38\% & 27,800 & 38\% & 502,300 & 40\% & 2,920 & 17\% \\ |
258 |
> |
Found $\W \to e\nu$ & 42.0 & 21\% & 171 & 0.6\% & 309.6 & 0.06\% & 13.8 & 0.5\% \\ |
259 |
> |
\W lepton $p_T$ cut & 34.9 & 83\% & 23.7 & 14\% & 86.8 & 28 \% & 8.3 & 60\% \\ |
260 |
> |
Passes HLT & 34.7 & 100\% & 23.6 & 99\% & 86.8 &100\% & 8.3 & 100\% \\ |
261 |
> |
\Z mass window & 31.6 & 91\% & 17.5 & 74\% & 51.9 &60\% & 3.3 & 39\% \\ \hline |
262 |
> |
Overall efficiency & & 5.8\% & & 0.024\% & & 0.0041\% & & 0.019\% \\ |
263 |
> |
\hline\hline |
264 |
> |
|
265 |
> |
\multicolumn{9}{c}{ {\bf $2e1\mu$ Channel}} \\ \hline \hline |
266 |
> |
Step & \WZ & $\epsilon$ & $b\bar{b}\ell\ell$ & $\epsilon$ & $\Z+jets$ & $\epsilon$ & $t\bar{t}+jets$ & $\epsilon$ \\ \hline |
267 |
> |
All events & 546 & & 72,770 & & 1,268,000 & & 17,600 & \\ |
268 |
> |
Found $\Z \to ee$ & 201 & 38\% & 27,800 & 38\% & 502,300 & 40\% & 2,921 &17\% \\ |
269 |
> |
Found $\W \to \mu\nu$ & 47.9 & 23\% & 748 & 2.7\% & 2194 & 0.43\% & 56.8 &1.9\% \\ |
270 |
> |
\W lepton $p_T$ cut & 37.1 & 77\% & 9.6 & 1.3\% & 9.6 & 0.4\% & 17.5 &31\% \\ |
271 |
> |
Passes HLT & 36.2 & 98\% & 9.3 & 96\% & 8.3 & 87\% & 15.2 & 87 \%) \\ |
272 |
> |
\Z mass window & 32.5 & 90\% & 8.2 & 88\% & 7.3 & 88\% & 4.9 & 32\%) \\ \hline |
273 |
> |
Overall efficiency & & 6.0\% & & 0.011\% & & 0.00058\% & & 0.028\% \\ |
274 |
> |
\hline \hline |
275 |
> |
|
276 |
> |
\multicolumn{9}{c}{ {\bf $2\mu1e$ Channel}} \\ \hline \hline |
277 |
> |
Step & \WZ & $\epsilon$ & $b\bar{b}\ell\ell$ & $\epsilon$ & $\Z+jets$ & $\epsilon$ & $t\bar{t}+jets$ & $\epsilon$ \\ \hline |
278 |
> |
All events & 546 & & 72,770 & & 1,268,000 & & 17,600 & \\ |
279 |
> |
Found $\Z \to \mu\mu$ & 234 &43\%& 31,890 & 44\% & 577,200 & 46\% & 2779 & 16\% \\ |
280 |
> |
Found $\W \to e\nu$ & 48.8 &21\%& 214 & 0.67\% & 702 & 0.12\% & 15.1 & 0.54\% \\ |
281 |
> |
\W lepton $p_T$ cut & 40.7 &83\%& 50.6 & 24\% & 464.0 & 66\% & 10.3 & 68\% \\ |
282 |
> |
$\Delta R(e,\mu)$ cut & 40.6&100\%& 23.3 & 46\% & 93.0 & 20\% & 7.1 & 70\% \\ |
283 |
> |
Passes HLT & 39.4 &97\%& 23.2 & 99\% & 88.8 & 95\% & 6.6 & 93\% \\ |
284 |
> |
\Z mass window & 35.6 & 90\% & 18.9 & 81\% & 50.3 & 57\% & 2.8 &44\% \\ \hline |
285 |
> |
Overall efficiency & &6.5\% & & 0.026\% & & 0.0040\% & & 0.016\% \\ |
286 |
> |
\hline \hline |
287 |
> |
|
288 |
> |
\multicolumn{9}{c}{ {\bf $3\mu$ Channel}} \\ \hline \hline |
289 |
> |
Step & \WZ & $\epsilon$ & ${b\bar{b}\ell\ell}$ & $\epsilon$ & $\Z+jets$ & $\epsilon$ & ${t\bar{t}+jets}$ & $\epsilon$ \\ \hline |
290 |
> |
All events & 546 & & 72,770 & & 1,268,000 & & 17,600 & \\ |
291 |
> |
Found $Z \to \mu\mu$ & 234 & 43\% & 31,900 & 44\% & 577,000 & 45\% & 2779 & 16 \% \\ |
292 |
> |
Found $W \to \mu$ & 58 & 25 \% & 811 & 2.5\% & 2521 & 0.44\% & 35.3 & 1.23 \% \\ |
293 |
> |
W Lepton Pt cut & 44.2 & 77 \% & 8.9 & 1.1\% & 1.8 & 0.07\% & 1.7 & 4.8 \% \\ |
294 |
> |
Passes HLT & 44.0 & 99\% & 8.9 & 100\% & 1.8 & 100 \% & 1.7 & 100 \% \\ |
295 |
> |
Z mass window & 40.0 & 91 \%) & 7.8 & 88\% & 1.8 & 100 \% & 1.2 & 69\% \\ \hline |
296 |
> |
Overall efficiency & & 7.3 \% & & 0.011\% & & 0.00015\% & & 0.0065\% \\ |
297 |
|
\hline |
298 |
|
\end{tabular} |
299 |
|
|
300 |
|
|
301 |
|
\caption{Expected number of signal and background events passing the different |
302 |
< |
selections steps in the \WZ, \Zbbbar, \Zjets and \ttjets samples for an integrated luminosity |
302 |
> |
selections steps together with the efficiency of each requirement and total efficiency of |
303 |
> |
selection criteria in the \WZ, \Zbbbar, \Zjets and \ttjets samples for an integrated luminosity |
304 |
|
of 1 \invfb.} |
305 |
|
\label{tab:sel-effA} |
306 |
|
\end{center} |
307 |
|
\end{table} |
308 |
|
|
309 |
< |
|
261 |
< |
|
262 |
< |
%\subsection{Signal extraction} |
263 |
< |
%\input D0Matrix |
264 |
< |
\input zjetbackground |
265 |
< |
|
266 |
< |
|
267 |
< |
\section{Systematic uncertainties} |
268 |
< |
\input Sys |
269 |
< |
|
270 |
< |
|
271 |
< |
\begin{figure}[bt] |
272 |
< |
\begin{center} |
273 |
< |
\scalebox{0.8}{\includegraphics{figs/met_by_channel.eps}} |
274 |
< |
\caption{Missing transverse mass for the four signal categories. |
275 |
< |
The distributions show the number of expected events |
276 |
< |
for $1 fb^{-1}$. Only events with 81.1 GeV $< M_Z < $ 101.1 \gev |
277 |
< |
are shown. All selection cuts are applied.} |
278 |
< |
\label{fig:met} |
279 |
< |
\end{center} |
280 |
< |
\end{figure} |
281 |
< |
|
282 |
< |
\begin{figure}[bt] |
283 |
< |
\begin{center} |
284 |
< |
\scalebox{0.8}{\includegraphics{figs/mtw_by_channel.eps}} |
285 |
< |
\caption{W transverse mass for the four signal categories. |
286 |
< |
The distributions show the number of expected events |
287 |
< |
for $1 fb^{-1}$. Only events with 81.1 GeV $< M_Z < $ 101.1 GeV are shown. |
288 |
< |
All selection cuts are applied.} |
289 |
< |
\label{fig:mtw} |
290 |
< |
\end{center} |
291 |
< |
\end{figure} |
292 |
< |
|
293 |
< |
|
294 |
< |
|
295 |
< |
|
296 |
< |
\begin{table}[tbp] |
309 |
> |
\begin{table}[p] |
310 |
|
\begin{center} |
311 |
< |
\begin{tabular}{lccccc} |
311 |
> |
\begin{tabular}{l|ccccc} |
312 |
|
\hline \hline |
313 |
< |
& \multicolumn{5}{c}{$Z \to ee $} \\ |
314 |
< |
& $W \to e$ |
315 |
< |
& $W \to \mu$ |
316 |
< |
& $W \to \tau \to e$ |
317 |
< |
& $W \to \tau \to \mu$ |
318 |
< |
& $W \to \tau \to hadrons$ |
313 |
> |
& \multicolumn{5}{c}{$\Z \to ee$ and \W decay modes below} \\ |
314 |
> |
Reconstruction channel & $e \nu$ |
315 |
> |
& $\mu \nu $ |
316 |
> |
& $\tau \nu \to e \nu \nu $ |
317 |
> |
& $\tau \nu \to \mu \nu \nu $ |
318 |
> |
& $\tau \nu \to {\rm hadrons~} \nu$ |
319 |
|
\\ \hline |
320 |
|
$3e$ & 17.4 \% & 0.0319 \% & 6.42 \% & 0 \% & 0.162 \% \\ |
321 |
|
$2e1\mu$ & 0 \% & 18.6 \% & 0 \% & 5.53 \% & 0.0485 \% \\ |
322 |
|
$2\mu1e$ & 0 \% & 0 \% & 0 \% & 0 \% & 0 \% \\ |
323 |
|
$3\mu$ & 0 \% & 0 \% & 0 \% & 0 \% & 0 \% \\ |
324 |
|
\hline \hline |
325 |
< |
& \multicolumn{5}{c}{$Z \to \mu\mu $} \\ |
326 |
< |
& $W \to e$ |
327 |
< |
& $W \to \mu$ |
328 |
< |
& $W \to \tau \to e$ |
329 |
< |
& $W \to \tau \to \mu$ |
330 |
< |
& $W \to \tau \to hadrons$ |
325 |
> |
|
326 |
> |
& \multicolumn{5}{c}{$\Z \to \mu\mu$ and \W decay modes below} \\ |
327 |
> |
Reconstruction channel & $e\nu$ |
328 |
> |
& $\mu\nu$ |
329 |
> |
& $\tau\nu \to e\nu\nu$ |
330 |
> |
& $\tau\nu \to \mu\nu\nu$ |
331 |
> |
& $\tau\nu \to {\rm hadrons~}\nu$ |
332 |
|
\\ \hline |
333 |
|
$3e$ & 0 \% & 0 \% & 0 \% & 0 \% & 0 \% \\ |
334 |
|
$2e1\mu$ & 0.0104 \% & 0 \% & 0 \% & 0 \% & 0 \% \\ |
340 |
|
\caption{Selection efficiency for signal events in the four selection channels for the different |
341 |
|
generated \W and \Z decay channels.} |
342 |
|
\label{tab:wz-effimatrix} |
329 |
– |
\end{table} |
343 |
|
|
344 |
< |
|
345 |
< |
\begin{table}[tbp] |
344 |
> |
%\end{table} |
345 |
> |
%\begin{table}[tbp] |
346 |
|
\begin{center} |
347 |
|
\begin{tabular}{llcc} \hline |
348 |
< |
& & \multicolumn{2}{c}{Generated decay:} \\ |
349 |
< |
& & \multicolumn{2}{c}{$Z \to ee $} \\ |
350 |
< |
Selection channel & & $W \to e$ & $W \to \mu$ \\ \hline |
348 |
> |
& & \multicolumn{2}{c}{Generated decay} \\ |
349 |
> |
& & \multicolumn{2}{c}{$\Z \to ee $} \\ |
350 |
> |
Selection channel & & $\W \to e\nu$ & $\W \to \mu\nu$ \\ |
351 |
|
\hline \hline |
352 |
|
\multicolumn{4}{c}{all} \\ \hline |
353 |
< |
$3e$ & all & 1644 & 3 \\ |
354 |
< |
$3e$ & matched Z & 0.937+/-0.00598 & 1+/-0\\ |
355 |
< |
$3e$ & matched W & 0.915+/-0.00688 & 0+/--1\\ |
356 |
< |
$3e$ & matched WZ & 0.914+/-0.00691 & 0+/--1\\ |
357 |
< |
\hline \hline |
358 |
< |
\multicolumn{4}{c}{exactly 1 W lepton candidate} \\ \hline |
359 |
< |
$3e$ & all & 1602 & 0 \\ |
360 |
< |
$3e$ & matched Z & 0.938+/-0.00604 & -1+/--1\\ |
361 |
< |
$3e$ & matched W & 0.915+/-0.00696 & -1+/--1\\ |
362 |
< |
$3e$ & matched WZ & 0.914+/-0.00699 & -1+/--1\\ |
363 |
< |
\hline \hline |
364 |
< |
\multicolumn{4}{c}{more than 1 W lepton candidate} \\ \hline |
365 |
< |
$3e$ & all & 42 & 3 \\ |
366 |
< |
$3e$ & matched Z & 0.929+/-0.0397 & 1+/-0\\ |
367 |
< |
$3e$ & matched W & 0.905+/-0.0453 & 0+/--1\\ |
368 |
< |
$3e$ & matched WZ & 0.905+/-0.0453 & 0+/--1\\ |
353 |
> |
$3e$ & all & 1644 events & 3 events \\ |
354 |
> |
$3e$ & matched \Z & 93$\pm$1\% & 100\%\\ |
355 |
> |
$3e$ & matched \W & 92$\pm$1\% & 0\\ |
356 |
> |
$3e$ & matched \WZ & 91$\pm$1\% & 0\\ |
357 |
> |
\hline \hline |
358 |
> |
|
359 |
> |
\multicolumn{4}{c}{exactly 1 \W lepton candidate} \\ \hline |
360 |
> |
$3e$ & all & 1602 events & 0 events \\ |
361 |
> |
$3e$ & matched \Z & 94$\pm$1\% & 0\\ |
362 |
> |
$3e$ & matched \W & 92$\pm$1\% & 0\\ |
363 |
> |
$3e$ & matched \WZ & 91$\pm$1\% & 0\\ |
364 |
> |
\hline \hline |
365 |
> |
|
366 |
> |
\multicolumn{4}{c}{more than 1 \W lepton candidate} \\ \hline |
367 |
> |
$3e$ & all & 42 events & 3 events \\ |
368 |
> |
$3e$ & matched \Z & 93$\pm$4\% & 100\%\\ |
369 |
> |
$3e$ & matched \W & 91 $\pm$5\% & 0\\ |
370 |
> |
$3e$ & matched \WZ & 91$\pm$5\% & 0\\ |
371 |
|
\hline \hline |
372 |
+ |
|
373 |
|
\multicolumn{4}{c}{all} \\ \hline |
374 |
< |
$2e1\mu$ & all & 0 & 1746 \\ |
375 |
< |
$2e1\mu$ & matched Z & -1+/--1 & 0.999+/-0.000573\\ |
376 |
< |
$2e1\mu$ & matched W & -1+/--1 & 1+/-0\\ |
377 |
< |
$2e1\mu$ & matched WZ & -1+/--1 & 0.999+/-0.000573\\ |
378 |
< |
\hline \hline |
379 |
< |
\multicolumn{4}{c}{exactly 1 W lepton candidate} \\ \hline |
380 |
< |
$2e1\mu$ & all & 0 & 1715 \\ |
381 |
< |
$2e1\mu$ & matched Z & -1+/--1 & 0.999+/-0.000583\\ |
382 |
< |
$2e1\mu$ & matched W & -1+/--1 & 1+/-0\\ |
383 |
< |
$2e1\mu$ & matched WZ & -1+/--1 & 0.999+/-0.000583\\ |
374 |
> |
$2e1\mu$ & all & 0 events & 1746 events \\ |
375 |
> |
$2e1\mu$ & matched \Z & 0 & 100\%\\ |
376 |
> |
$2e1\mu$ & matched \W & 0 & 100\%\\ |
377 |
> |
$2e1\mu$ & matched \WZ & 0 & 100\%\\ |
378 |
> |
\hline \hline |
379 |
> |
|
380 |
> |
\multicolumn{4}{c}{exactly 1 \W lepton candidate} \\ \hline |
381 |
> |
$2e1\mu$ & all & 0 events & 1715 events \\ |
382 |
> |
$2e1\mu$ & matched \Z & 0 & 100\%\\ |
383 |
> |
$2e1\mu$ & matched \W & 0 & 100\%\\ |
384 |
> |
$2e1\mu$ & matched \WZ & 0 & 100\%\\ |
385 |
|
\hline \hline |
386 |
< |
\multicolumn{4}{c}{more than 1 W lepton candidate} \\ \hline |
386 |
> |
|
387 |
> |
\multicolumn{4}{c}{more than 1 \W lepton candidate} \\ \hline |
388 |
|
$2e1\mu$ & all & 0 & 31 \\ |
389 |
< |
$2e1\mu$ & matched Z & -1+/--1 & 1+/-0\\ |
390 |
< |
$2e1\mu$ & matched W & -1+/--1 & 1+/-0\\ |
391 |
< |
$2e1\mu$ & matched WZ & -1+/--1 & 1+/-0\\ \hline \hline |
389 |
> |
$2e1\mu$ & matched \Z & 0 & 100\%\\ |
390 |
> |
$2e1\mu$ & matched \W & 0 & 100\%\\ |
391 |
> |
$2e1\mu$ & matched \WZ & 0 & 100\% \\ \hline \hline |
392 |
|
\end{tabular} |
393 |
|
\end{center} |
394 |
|
\caption{Fractions of events with correctly matched leptons |
403 |
|
\begin{center} |
404 |
|
\begin{tabular}{llcc} \hline |
405 |
|
& & \multicolumn{2}{c}{Generated decay:} \\ |
406 |
< |
& & \multicolumn{2}{c}{$Z \to \mu\mu $} \\ |
407 |
< |
Selection channel & & $W \to e$ & $W \to \mu$ |
408 |
< |
\\ \hline |
406 |
> |
& & \multicolumn{2}{c}{$\Z \to \mu\mu $} \\ |
407 |
> |
Selection channel & & $\W \to e\nu$ & $\W \to \mu\nu$ |
408 |
> |
\\ |
409 |
|
\hline \hline |
410 |
|
\multicolumn{4}{c}{all} \\ \hline |
411 |
< |
$2\mu1e$ & all & 1895 & 2 \\ |
412 |
< |
$2\mu1e$ & matched Z & 1+/-0 & 1+/-0\\ |
413 |
< |
$2\mu1e$ & matched W & 0.985+/-0.00282 & 0+/--1\\ |
414 |
< |
$2\mu1e$ & matched WZ & 0.985+/-0.00282 & 0+/--1\\ |
415 |
< |
\hline \hline |
416 |
< |
\multicolumn{4}{c}{exactly 1 W lepton candidate} \\ \hline |
417 |
< |
$2\mu1e$ & all & 1847 & 0 \\ |
418 |
< |
$2\mu1e$ & matched Z & 1+/-0 & -1+/--1\\ |
419 |
< |
$2\mu1e$ & matched W & 0.986+/-0.00274 & -1+/--1\\ |
420 |
< |
$2\mu1e$ & matched WZ & 0.986+/-0.00274 & -1+/--1\\ |
421 |
< |
\hline \hline |
422 |
< |
\multicolumn{4}{c}{more than 1 W lepton candidate} \\ \hline |
423 |
< |
$2\mu1e$ & all & 48 & 2 \\ |
424 |
< |
$2\mu1e$ & matched Z & 1+/-0 & 1+/-0\\ |
425 |
< |
$2\mu1e$ & matched W & 0.938+/-0.0349 & 0+/--1\\ |
426 |
< |
$2\mu1e$ & matched WZ & 0.938+/-0.0349 & 0+/--1\\ |
411 |
> |
$2\mu1e$ & all & 1895 events & 2 events \\ |
412 |
> |
$2\mu1e$ & matched \Z & 100\% & 100\%\\ |
413 |
> |
$2\mu1e$ & matched \W & 99$\pm$1\% & 0\\ |
414 |
> |
$2\mu1e$ & matched \WZ & 99$\pm$1\% & 0\\ |
415 |
> |
\hline \hline |
416 |
> |
|
417 |
> |
\multicolumn{4}{c}{exactly 1 \W lepton candidate} \\ \hline |
418 |
> |
$2\mu1e$ & all & 1847 events & 0 events \\ |
419 |
> |
$2\mu1e$ & matched \Z & 100\% & 0\\ |
420 |
> |
$2\mu1e$ & matched \W & 99$\pm$1\% & 0\\ |
421 |
> |
$2\mu1e$ & matched \WZ & 99$\pm$1\% & 0\\ |
422 |
> |
\hline \hline |
423 |
> |
|
424 |
> |
\multicolumn{4}{c}{more than 1 \W lepton candidate} \\ \hline |
425 |
> |
$2\mu1e$ & all & 48 events & 2 events \\ |
426 |
> |
$2\mu1e$ & matched \Z & 100\% & 100\%\\ |
427 |
> |
$2\mu1e$ & matched \W & 94$\pm$3.5\%& 0\\ |
428 |
> |
$2\mu1e$ & matched \WZ & 94$\pm$3.5\% & 0\\ |
429 |
|
\hline \hline |
430 |
+ |
|
431 |
|
\multicolumn{4}{c}{all} \\ \hline |
432 |
< |
$3\mu$ & all & 0 & 2251 \\ |
433 |
< |
$3\mu$ & matched Z & -1+/--1 & 0.943+/-0.00488\\ |
434 |
< |
$3\mu$ & matched W & -1+/--1 & 0.933+/-0.00526\\ |
435 |
< |
$3\mu$ & matched WZ & -1+/--1 & 0.933+/-0.00526\\ |
436 |
< |
\hline \hline |
437 |
< |
\multicolumn{4}{c}{exactly 1 W lepton candidate} \\ \hline |
438 |
< |
$3\mu$ & all & 0 & 2207 \\ |
439 |
< |
$3\mu$ & matched Z & -1+/--1 & 0.944+/-0.0049\\ |
440 |
< |
$3\mu$ & matched W & -1+/--1 & 0.934+/-0.00529\\ |
441 |
< |
$3\mu$ & matched WZ & -1+/--1 & 0.934+/-0.00529\\ |
442 |
< |
\hline \hline |
443 |
< |
\multicolumn{4}{c}{more than 1 W lepton candidate} \\ \hline |
444 |
< |
$3\mu$ & all & 0 & 44 \\ |
445 |
< |
$3\mu$ & matched Z & -1+/--1 & 0.909+/-0.0433\\ |
446 |
< |
$3\mu$ & matched W & -1+/--1 & 0.909+/-0.0433\\ |
447 |
< |
$3\mu$ & matched WZ & -1+/--1 & 0.909+/-0.0433\\ \hline \hline |
432 |
> |
$3\mu$ & all & 0 events & 2251 events \\ |
433 |
> |
$3\mu$ & matched \Z & 0 & 94$\pm$1\%\\ |
434 |
> |
$3\mu$ & matched \W & 0 & 93$\pm$1\%\\ |
435 |
> |
$3\mu$ & matched \WZ & 0 & 93$\pm$1\%\\ |
436 |
> |
\hline \hline |
437 |
> |
|
438 |
> |
\multicolumn{4}{c}{exactly 1 \W lepton candidate} \\ \hline |
439 |
> |
$3\mu$ & all & 0 events & 2207 events \\ |
440 |
> |
$3\mu$ & matched \Z & 0 & 94$\pm$1\%\\ |
441 |
> |
$3\mu$ & matched \W & 0 & 93$\pm$1\%\\ |
442 |
> |
$3\mu$ & matched \WZ & 0 & 93$\pm$1\%\\ |
443 |
> |
\hline \hline |
444 |
> |
|
445 |
> |
\multicolumn{4}{c}{more than 1 \W lepton candidate} \\ \hline |
446 |
> |
$3\mu$ & all & 0 events & 44 events \\ |
447 |
> |
$3\mu$ & matched \Z & 0 & 91$\pm$4\%\\ |
448 |
> |
$3\mu$ & matched \W & 0 & 91$\pm$4\%\\ |
449 |
> |
$3\mu$ & matched \WZ & 0 & 91$\pm$4\%\\ \hline \hline |
450 |
|
\end{tabular} |
451 |
|
\end{center} |
452 |
|
\caption{Fractions of MC \WZ events with correctly matched leptons |
455 |
|
\label{tab:wz-matcheffi-Zmumu} |
456 |
|
\end{table} |
457 |
|
|
458 |
+ |
|
459 |
+ |
%\subsection{Signal extraction} |
460 |
+ |
%\input D0Matrix |
461 |
+ |
\input zjetbackground |
462 |
+ |
|
463 |
+ |
|
464 |
+ |
\section{Systematic uncertainties} |
465 |
+ |
\input Sys |
466 |
+ |
|
467 |
+ |
|
468 |
+ |
\begin{figure}[bt] |
469 |
+ |
\begin{center} |
470 |
+ |
\scalebox{0.8}{\includegraphics{figs/met_by_channel.eps}} |
471 |
+ |
\caption{Missing transverse mass for the four signal categories. |
472 |
+ |
The distributions show the number of expected events |
473 |
+ |
for $1 fb^{-1}$. Only events with 81.1 GeV $< M_Z < $ 101.1 \gev |
474 |
+ |
are shown. All selection cuts are applied.} |
475 |
+ |
\label{fig:met} |
476 |
+ |
\end{center} |
477 |
+ |
\end{figure} |
478 |
+ |
|
479 |
+ |
\begin{figure}[bt] |
480 |
+ |
\begin{center} |
481 |
+ |
\scalebox{0.8}{\includegraphics{figs/mtw_by_channel.eps}} |
482 |
+ |
\caption{W transverse mass for the four signal categories. |
483 |
+ |
The distributions show the number of expected events |
484 |
+ |
for $1 fb^{-1}$. Only events with 81.1 GeV $< M_Z < $ 101.1 GeV are shown. |
485 |
+ |
All selection cuts are applied.} |
486 |
+ |
\label{fig:mtw} |
487 |
+ |
\end{center} |
488 |
+ |
\end{figure} |
489 |
+ |
|
490 |
+ |
|
491 |
+ |
|
492 |
+ |
|
493 |
+ |
|