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% limit: less than 4.689 signal events |
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|
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|
|
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+ |
|
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\subsection{mSUGRA scan} |
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\label{sec:mSUGRA} |
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We also perform a scan of the mSUGRA parameter space, as recomended |
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\item A 5\% uncertainty due to lepton efficiencies |
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\item An uncertaity on the NLO cross-section obtained by varying the |
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factorization and renormalization scale by a factor of two\cite{ref:sanjay}. |
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\item The PDF uncertainty on the product of cross-section and acceptance |
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calculated using the method of Reference~\cite{ref:pdf}. |
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> |
\item A 13\% PDF uncertainty on the product of cross-section and acceptance. |
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This uncertainty was calculated using the method of Reference~\cite{ref:pdf} for a |
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> |
number of points in the $m_0$ vs. $m_{1/2}$ plane, and was found to be |
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approximately independent of mSUGRA parameters, see Table~\ref{tab:pdf}. |
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\end{itemize} |
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\item We use the ``log-normal'' model for the nuisance parameters |
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in cl95cms |
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\end{itemize} |
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We actually calculate three different values of $N_{UL}$: |
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\begin{enumerate} |
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\item Observed $N_{UL}$ asssuming the NLO cross-section. |
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\item Observed $N_{UL}$ asssuming the LO cross-section. In this case |
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uncertainties due to PDFs and renormlization/factorization scales are not |
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included. |
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\item Expected $N_{UL}$ sssuming the NLO cross-section. This is |
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calculated using the the CLA function also available in cl95cms. |
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\end{enumerate} |
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|
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\begin{table}[hbt] |
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\begin{center} |
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\caption{\label{tab:pdf} PDF uncertainties on the product of |
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cross-section and acceptance for a number of representative points |
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in the mSUGRA plane.} |
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\begin{tabular}{c|c|c|c|c|c} |
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$\tan\beta$ & $m_0$ & $m_{1/2}$ & sign of $\mu$ & $A_0$ & uncertanity (\%) \\ \hline |
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3 & 50 & 260 & + & 0 & $^{+13}_{-9}$ \\ |
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3 & 50 & 270 & + & 0 & $^{+13}_{-9}$ \\ |
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3 & 60 & 260 & + & 0 & $^{+14}_{-9}$ \\ |
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3 & 200 & 200 & + & 0 & $^{+12}_{-9}$ \\ |
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3 & 200 & 210 & + & 0 & $^{+13}_{-10}$ \\ |
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3 & 210 & 200 & + & 0 & $^{+11}_{-8}$ \\ |
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3 & 200 & 140 & + & 0 & $^{+16}_{-12}$ \\ |
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3 & 140 & 150 & + & 0 & $^{+08}_{-8}$ \\ |
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3 & 150 & 140 & + & 0 & $^{+14}_{-10}$ \\ |
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10 & 60 & 260 & + & 0 & $^{+16}_{-11}$ \\ |
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10 & 100 & 260 & + & 0 & $^{+14}_{-10}$ \\ |
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10 & 100 & 260 & + & 0 & $^{+12}_{-9}$ \\ |
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10 & 90 & 260 & + & 0 & $^{+15}_{-10}$ \\ |
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10 & 240 & 260 & + & 0 & $^{+10}_{-8}$ \\ |
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10 & 240 & 260 & + & 0 & $^{+13}_{-10}$ \\ \hline |
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\end{tabular} |
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\end{center} |
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\end{table} |
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|
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|
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An mSUGRA point is excluded if the resulting $N_{UL}$ is smaller |
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than the expected number of events. Because of the quantization |
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of the available MC points in the $m_0$ vs $m_{1/2}$ plane, the |
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boundaries of the excluded region are also quantized. We smooth |
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the boundaries using the method recommended by the SUSY |
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group\cite{ref:smooth}. In addition, we show a limit |
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curve based on the LO cross-section, as well as the |
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``expected'' limit curve. The expected limit curve is |
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calculated using the CLA function also available in cl95cms. |
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Cross-section uncertainties due to variations of the factorization |
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and renormalization scale are not included for the LO curve. |
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The results are shown in Figure~\ref{fig:msugra} |
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boundaries of the excluded region are also quantized. The excluded points |
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> |
are shown in Figure~\ref{fig:tanbeta3raw}; in this Figure we also show |
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> |
ad-hoc curves that represent the excluded regions. |
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> |
In Figure~\ref{fig:msugra} we show our results compared with |
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> |
results from previous experiments. |
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|
239 |
> |
|
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> |
\begin{figure}[tbh] |
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> |
\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} |
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> |
\caption{\label{fig:tanbeta3raw}\protect Excluded points in the |
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> |
$m_0$ vs. $m_{1/2}$ plane for $\tan\beta=3$, sign of $\mu = +$ and $A_{0}=0$~GeVs. |
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> |
Top left: observed, using the NLO cross-section. |
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> |
Top right: expected using the NLO cross-section. |
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> |
Bottom left: observed, using the LO cross-section. |
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> |
The curves are meant to represent the excluded regions.} |
251 |
> |
\end{center} |
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> |
\end{figure} |
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|
|
254 |
|
|
255 |
|
\begin{figure}[tbh] |
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|
\begin{center} |
257 |
< |
\includegraphics[width=\linewidth]{exclusion_noPDF.pdf} |
257 |
> |
\includegraphics[width=\linewidth]{exclusion.pdf} |
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|
\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 |
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 |
|
|
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} |
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 |
|
|
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 |
|
|