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# Line 10 | Line 10
10   \end{tabular}
11   \caption{
12   Interpretation of the results of the search in (a) the same-sign dilepton final state for
13 < bottom squark pair production with $\tilde{b}\to t\chip$ depicted in Fig.~\ref{fig:diagrams}(d), and (b)
13 > bottom squark pair production with $\tilde{b}\to t\chim$ depicted in Fig.~\ref{fig:diagrams}(d), and (b)
14   the all-hadronic final state for bottom squark pair production with $\tilde{b}\to b\lsp$ depicted in Fig.~\ref{fig:diagrams}(c).
15   \label{fig:ss_interpretation}
16   }
# Line 18 | Line 18 | the all-hadronic final state for bottom
18   \end{figure*}
19  
20   This section presents a search in the same-sign (SS) dilepton final state, based on 10.5 fb$^{-1}$.
21 < A wide variety of new physics processes may produce events with SS leptons, which provide a very clean
21 > A wide variety of new physics scenarios may produce events with SS leptons, which provide a very clean
22   final state due to low SM background expectations. In particular, this final state is sensitive to
23 < direct pair production of bottom squarks with $\tilde{b}\to t \chi^{\pm}\to t W \lsp$ depicted in Fig.~\ref{fig:diagrams}(d),
23 > direct pair production of bottom squarks with $\tilde{b}\to t \chim \to t W \lsp$ depicted in Fig.~\ref{fig:diagrams}(d),
24   as well as to gluino-mediated production of top and bottom squarks.
25  
26   We select events with two leptons (e or $\mu$) with \pt\ $>$ 20 GeV and dilepton invariant mass $m_{\ell\ell}>8$ GeV.
# Line 52 | Line 52 | Signal regions are defined by placing ad
52   \met, and $H_T$, defined as the scalar sum of the transverse momenta of selected jets.
53   The observed data yields in all signal regions are in good agreement with the SM background expectations;
54   see Ref.~\cite{ref:ss} for the full quantitative results. The signal region that is most sensitive to
55 < bottom squark pair production with $\tilde{b}\to t \chi^{\pm}$ depicted in Fig.~\ref{fig:diagrams}(d)
55 > bottom squark pair production with $\tilde{b}\to t \chim$ depicted in Fig.~\ref{fig:diagrams}(d)
56   has at least four jets, \met\ $>$ 120 GeV and
57   $H_T$ $>$ 200 GeV. In this region we observe 1 event in data and predict 2.22 $\pm$ 0.96 events.
58   The results are used to exclude a region of the model parameter space in Fig.~\ref{fig:ss_interpretation}(a),
59   which demonstrates that our search probes bottom squarks with masses up to 450 GeV.
60 < The constraint on the bottom squark from naturalness considerations is similar to that on the top squark,
61 < suggesting a bottom squark with mass less than 500-700~GeV.
60 > Naturalness considerations suggest a bottom squark with mass not exceeding 500--700 GeV, similar to the constraint
61 > on the top squark mass.
62   Several additional interpretations for models with gluino-mediated top and
63   bottom squark production are presented in Ref.~\cite{ref:ss}.
64  

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