12 |
|
jets of $P_T > 30$ GeV and $|\eta| < 2.5$; the scalar sum of the |
13 |
|
$P_T$ of all such jets must exceed 100 GeV; jets must pass |
14 |
|
{\tt caloJetId} and be separated by $\Delta R >$ 0.4 from the |
15 |
< |
two leptons. Finally $\met > 50$ GeV |
15 |
> |
any lepton passing the selection described below. |
16 |
> |
{\color{red}The 11 pb iteration only does this for the two selected |
17 |
> |
leptons.} |
18 |
> |
Finally $\met > 50$ GeV |
19 |
|
(we use tcMet). More details are given in the subsections below. |
20 |
|
|
21 |
|
\subsection{Event Cleanup} |
58 |
|
\item At least one of the hits from the |
59 |
|
standalone muon must be used in the global fit. |
60 |
|
|
61 |
< |
\item Require tracker $\Delta P_T/P_T < 0.1$. This cut was not in the original top analysis. |
62 |
< |
It is motivated by the observation of |
63 |
< |
poorly measured muons in data with large |
64 |
< |
relative $P_T$ uncertainty, giving significant contributions to the \met. |
61 |
> |
%\item Require tracker $\Delta P_T/P_T < 0.1$. This cut was not in the original top analysis. |
62 |
> |
%It is motivated by the observation of |
63 |
> |
%poorly measured muons in data with large |
64 |
> |
%relative $P_T$ uncertainty, giving significant contributions to the \met. |
65 |
> |
%{\color{red} This is not applied to the 11 pb iteration.} |
66 |
|
|
67 |
|
|
68 |
|
\end{itemize} |