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Revision 1.34 by claudioc, Fri Jan 14 00:02:59 2011 UTC vs.
Revision 1.37 by claudioc, Fri Jan 21 03:47:11 2011 UTC

# Line 148 | Line 148 | the underlying physics.
148   % limit: less than     4.689 signal events
149  
150  
151 +
152   \subsection{mSUGRA scan}
153   \label{sec:mSUGRA}
154   We also perform a scan of the mSUGRA parameter space, as recomended
# Line 181 | Line 182 | using the method described in Section~\r
182   \item A 5\% uncertainty due to lepton efficiencies
183   \item An uncertaity on the NLO cross-section obtained by varying the
184   factorization and renormalization scale by a factor of two\cite{ref:sanjay}.
185 < \item The PDF uncertainty on the product of cross-section and acceptance
186 < calculated using the method of Reference~\cite{ref:pdf}.
185 > \item A 13\% PDF uncertainty on the product of cross-section and acceptance.
186 > This uncertainty was calculated using the method of Reference~\cite{ref:pdf} for a
187 > number of points in the $m_0$ vs. $m_{1/2}$ plane, and was found to be
188 > approximately independent of mSUGRA parameters, see Table~\ref{tab:pdf}.
189   \end{itemize}
190   \item We use the ``log-normal'' model for the nuisance parameters
191   in cl95cms
192   \end{itemize}
193 + We actually calculate three different values of $N_{UL}$:
194 + \begin{enumerate}
195 + \item Observed $N_{UL}$ asssuming the NLO cross-section.
196 + \item Observed $N_{UL}$ asssuming the LO cross-section. In this case
197 + uncertainties due to PDFs and renormlization/factorization scales are not
198 + included.
199 + \item Expected $N_{UL}$ sssuming the NLO cross-section.  This is
200 + calculated using the the CLA function also available in cl95cms.
201 + \end{enumerate}
202 +
203 + \begin{table}[hbt]
204 + \begin{center}
205 + \caption{\label{tab:pdf} PDF uncertainties on the product of
206 + cross-section and acceptance for a number of representative points
207 + in the mSUGRA plane.}
208 + \begin{tabular}{c|c|c|c|c|c}
209 + $\tan\beta$ & $m_0$ & $m_{1/2}$ & sign of $\mu$ & $A_0$ & uncertanity (\%)   \\ \hline
210 + 3           & 50    & 260       & +             &  0    & $^{+13}_{-9}$ \\
211 + 3           & 50    & 270       & +             &  0    & $^{+13}_{-9}$ \\
212 + 3           & 60    & 260       & +             &  0    & $^{+14}_{-9}$ \\
213 + 3           & 200   & 200       & +             &  0    & $^{+12}_{-9}$ \\
214 + 3           & 200   & 210       & +             &  0    & $^{+13}_{-10}$ \\
215 + 3           & 210   & 200       & +             &  0    & $^{+11}_{-8}$ \\
216 + 3           & 200   & 140       & +             &  0    & $^{+16}_{-12}$ \\
217 + 3           & 140   & 150       & +             &  0    & $^{+08}_{-8}$ \\
218 + 3           & 150   & 140       & +             &  0    & $^{+14}_{-10}$ \\
219 + 10          & 60    & 260       & +             &  0    & $^{+16}_{-11}$ \\
220 + 10          & 100   & 260       & +             &  0    & $^{+14}_{-10}$ \\
221 + 10          & 100   & 260       & +             &  0    & $^{+12}_{-9}$ \\
222 + 10          & 90    & 260       & +             &  0    & $^{+15}_{-10}$ \\
223 + 10          & 240   & 260       & +             &  0    & $^{+10}_{-8}$ \\
224 + 10          & 240   & 260       & +             &  0    & $^{+13}_{-10}$  \\ \hline
225 + \end{tabular}
226 + \end{center}
227 + \end{table}
228 +
229  
230   An mSUGRA point is excluded if the resulting $N_{UL}$ is smaller
231   than the expected number of events.  Because of the quantization
232   of the available MC points in the $m_0$ vs $m_{1/2}$ plane, the
233 < boundaries of the excluded region are also quantized.  We smooth
234 < the boundaries using the method recommended by the SUSY
235 < group\cite{ref:smooth}.  In addition, we show a limit
236 < curve based on the LO cross-section, as well as the
237 < ``expected'' limit curve.  The expected limit curve is
238 < calculated using the CLA function also available in cl95cms.
239 < Cross-section uncertainties due to variations of the factorization
240 < and renormalization scale are not included for the LO curve.
241 < The results are shown in Figure~\ref{fig:msugra}
233 > boundaries of the excluded region are also quantized.  The excluded points
234 > are shown in Figure~\ref{fig:tanbeta3raw}; in this Figure we also show
235 > ad-hoc curves that represent the excluded regions.
236 > In Figure~\ref{fig:msugra} we show our results compared with
237 > results from previous experiments.
238 >
239 >
240 > \begin{figure}[tbh]
241 > \begin{center}
242 > \includegraphics[width=0.4\linewidth]{tanbeta3_NLO_observed.png}
243 > \includegraphics[width=0.4\linewidth]{tanbeta3_NLO_expected.png}
244 > \includegraphics[width=0.4\linewidth]{tanbeta3_LO_observed.png}
245 > \caption{\label{fig:tanbeta3raw}\protect Excluded points in the
246 > $m_0$ vs. $m_{1/2}$ plane for $\tan\beta=3$, sign of $\mu = +$ and $A_{0}=0$~GeVs.
247 > Top left: observed, using the NLO cross-section.
248 > Top right: expected using the NLO cross-section.
249 > Bottom left: observed, using the LO cross-section.
250 > The curves are meant to represent the excluded regions.}
251 > \end{center}
252 > \end{figure}
253  
254  
255   \begin{figure}[tbh]
256   \begin{center}
257 < \includegraphics[width=\linewidth]{exclusion_noPDF.pdf}
257 > \includegraphics[width=\linewidth]{exclusion.pdf}
258   \caption{\label{fig:msugra}\protect Exclusion curves in the mSUGRA parameter space,
259 < assuming $\tan\beta=3$, sign of $\mu = +$ and $A_{0}=0$~GeVs.  THIS IS STILL MISSING
210 < THE PDF UNCERTAINTIES.  WE ALSO WANT TO IMPROVE THE SMOOTHING PROCEDURE.}
259 > assuming $\tan\beta=3$, sign of $\mu = +$ and $A_{0}=0$~GeVs.}  
260   \end{center}
261   \end{figure}
262  
263  
264 +
265 + \clearpage
266 +
267   \subsubsection{Check of the nuisance parameter models}
268   We repeat the procedure outlined above but changing the
269   lognormal nuisance parameter model to a gaussian or
# Line 223 | Line 275 | show the raw results, without smoothing)
275   \begin{figure}[tbh]
276   \begin{center}
277   \includegraphics[width=0.5\linewidth]{nuissance.png}
278 < \caption{\label{fig:nuisance}\protect Exclusion curves in the
278 > \caption{\label{fig:nuisance}\protect Observed NLO exclusion curves in the
279   mSUGRA parameter space,
280   assuming $\tan\beta=3$, sign of $\mu = +$ and $A_{0}=0$~GeVs
281 < using different models for the nuisance parameters.
282 < PDF UNCERTAINTIES ARE NOT INCLUDED.}
281 > using different models for the nuisance parameters. (Note: this
282 > plot was made without the PDF uncertainties.}
283   \end{center}
284   \end{figure}
285  
# Line 238 | Line 290 | Following the recommendation of Referenc
290   we use the lognormal nuisance parameter model as the default.
291  
292  
293 < \clearpage
293 > % \clearpage
294  
295  
296   \subsubsection{Effect of signal contamination}
# Line 292 | Line 344 | and therefore a weaker limit.
344   \begin{figure}[tbh]
345   \begin{center}
346   \includegraphics[width=0.5\linewidth]{sigcont.png}
347 < \caption{\label{fig:sigcont}\protect Exclusion curves in the
347 > \caption{\label{fig:sigcont}\protect Observed NLO exclusion curves in the
348   mSUGRA parameter space,
349   assuming $\tan\beta=3$, sign of $\mu = +$ and $A_{0}=0$~GeVs
350   with and without the effects of signal contamination.
351 < PDF UNCERTAINTIES ARE NOT INCLUDED.}  
351 > Note: PDF uncertainties are not included.}  
352   \end{center}
353   \end{figure}
354  
# Line 309 | Line 361 | small, of the same order as the quantiza
361   \subsubsection{mSUGRA scans with different values of tan$\beta$}
362   \label{sec:tanbetascan}
363  
364 < For completeness, we also show the exclusion regions calculated
364 > For completeness, we also show the exclusion region calculated
365   using $\tan\beta = 10$ (Figure~\ref{fig:msugratb10}).
366  
367 +
368 + \begin{figure}[tbh]
369 + \begin{center}
370 + \includegraphics[width=0.4\linewidth]{tanbeta10_NLO_observed.png}
371 + \caption{\label{fig:tanbeta10raw}\protect Excluded points in the
372 + $m_0$ vs. $m_{1/2}$ plane for $\tan\beta=10$, sign of $\mu = +$ and $A_{0}=0$~GeVs.
373 + This plot is made using the NLO cross-sections.
374 + The curves is meant to represent the excluded region.}
375 + \end{center}
376 + \end{figure}
377 +
378   \begin{figure}[tbh]
379   \begin{center}
380   \includegraphics[width=\linewidth]{exclusion_tanbeta10.pdf}
381 < \caption{\label{fig:msugratb10}\protect Exclusion curves in the mSUGRA parameter space,
382 < assuming $\tan\beta=10$, sign of $\mu = +$ and $A_{0}=0$~GeVs.  THIS IS STILL MISSING
320 < THE PDF UNCERTAINTIES.  WE ALSO WANT TO IMPROVE THE SMOOTHING PROCEDURE.}
381 > \caption{\label{fig:msugratb10}\protect Exclusion curve in the mSUGRA parameter space,
382 > assuming $\tan\beta=10$, sign of $\mu = +$ and $A_{0}=0$~GeVs.}  
383   \end{center}
384   \end{figure}
385  

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