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Revision 1.3 by beaucero, Fri Jun 20 12:32:59 2008 UTC vs.
Revision 1.16 by vuko, Wed Jul 16 13:59:34 2008 UTC

# Line 14 | Line 14
14   \usepackage{lscape}
15   \usepackage{graphicx}
16   \usepackage{pst-node}
17 + \usepackage{epstopdf}
18 +
19 + \renewcommand{\dj}{d\kern-0.4em\char"16\kern-0.1em}
20 + \renewcommand{\DJ}{\raise0.3ex\hbox{-}\kern-0.36em D}
21 +
22 +
23   \RequirePackage{xspace}
24   \input noteWZsymbols
25  
# Line 24 | Line 30
30  
31   \begin{titlepage}
32  
33 < %  \analysisnote{2008/xxx}
34 <   \date{20 June 2008}
33 >  \analysisnote{2008/051}
34 >   \date{\today}
35  
36    \title{Study of the process\\
37 <    $ \proton\proton\to \W\Z \to  \ell^{\pm} \ellell (\ell=e,\mu)$\\
37 >    $ \proton\proton\to \W\Z \to  \ell^{\pm}\nu \ellell (\ell=e,\mu)$\\
38       at CMS}
39  
40    \begin{Authlist}
41 <    V.~Brigljevi\'c, S.~Morovi\'c, S.~Djuri\'c
42 <       \Instfoot{IRB}{Rudjer Bo\v skovi\'c Institute, 10002 Zagreb, Croatia}
41 >    V.~Brigljevi\'c, S.~Morovi\'c, S.~ \DJ uri\'c
42 >       \Instfoot{IRB}{Ru\dj er Bo\v skovi\'c Institute, 10002 Zagreb, Croatia}
43         S.~Beauceron
44         \Instfoot{CERN}{CERN, Geneva, Switzerland}
45         K.~Kaadze, Y.~Maravin
# Line 43 | Line 49
49    \begin{abstract}
50  
51      In this note, we investigate the discovery potential
52 <    for the $\proton\proton \to \W\Z \to \ell^{\pm} \ellell (\ell=e,\mu)$ process at CMS,
53 <    with full detector simulation of the signal and of the various backgrounds.
52 >    for the $\proton\proton \to \W\Z \to \ell^{\pm}\nu\ellell (\ell=e,\mu)$ process at CMS,
53 >    using full detector simulation of the signal and of the various physics and
54 >    instrumental backgrounds. We propose data driven methods to extract backgrounds
55 >    and estimate that we can reach 5$\sigma$ significance of \WZ signal at CMS with
56 >    less than 350 \invpb at 95 \% C.L..
57 >    
58   %    We determine the signal significance as a function of
59   %    integrated luminosity at the LHC based on Standard Model
60   %    cross sections computed at the next to leading order in $\alpha_s$.  
61 < %    We expect $\sim 97 $ signal $\W\Z \to \ell^{\pm} \ellell (\ell=e,\mu)$ events for $\sim 22$ background
62 < %    events per inverse femtobarn. The background is found
63 < %    to be dominated by the $\Zbbbar$,  $\t\tbar$ and \ZZ processes with three true electrons or muons in the
64 < %    final state.  The sensitivity of the analysis allows for a potential 5-sigma discovery
65 < %    of the $\proton\proton \to\W\Z$ channel with about 150 inverse picobarn.
61 > %    We expect $\sim 97 $ signal $\W\Z \to \ell^{\pm}\nu \ellell (\ell=e,\mu)$ events
62 > %    and $\sim 22$ background events per inverse femtobarn. The background is found
63 > %    to be dominated by the $\Zbbbar$,  $\t\tbar$, and \ZZ processes.
64 > %    The sensitivity of the method allows for a potential 5-sigma discovery
65 > %    of the $\proton\proton \to\W\Z$ process with about 150 inverse picobarn.
66    \end{abstract}
67  
68   \end{titlepage}
# Line 69 | Line 79
79   \input introduction
80   \input samples
81   \input selection
82 + \input zjetbackground
83 + \input Sys
84 +
85   \input results
86   \input conclusion
87 + \input wzmatcheff
88 + %\input trial
89  
90   %\newpage
91   \bibliographystyle{physrev4wt}
92   \bibliography{noteWZ}
93  
94 +
95 + \begin{thebibliography}{99}
96 + \bibitem{Haywood:1999qg} S.Haywood {\it et al.} ``Electroweak physics'', hep-ph/0003275
97 + \bibitem{Sjostrand:2003wg} T. Sjostrand, L. Lonnblad, S. Mrenna and P. Skands, ``PYHTIA 6.3: Physics and manual'', hep-ph/0308153
98 + \bibitem{Campbell:2005} J. M. Campbell and R. K. Ellis, ``MCFM v4.1. A Monte Carlo for FeMtobarn processes at hadron colliders''
99 + \bibitem{Frixione:2002ik} S. Frixione and B. R. Webber, ``Matching NLO QCD computations and parton shower simulations'', JHEP 06.029 (2002), [hep-ph/0204244]
100 + \bibitem{noteElectronID} S.~Beauceron, K.~Kaadze, Y.~Maravin, V.~Brigljevic, S.~Morovic, ``Study of electron identification in $\W^{\pm} Z\to \ell^+\ell^- \ell^\pm \nu$ events'', CMS~AN-2008/047
101 + \bibitem{Zmumu} N.~Adam {\it and al}, ``Towards a measurement of the inclusive $W\rightarrow\mu\nu$ and $Z\rightarrow\mu^{+}\mu^{-}$ cross sections in pp collisions at $\sqrt{s} = 14$ TeV'', CMS~AN-2007/031
102 + \bibitem{Zee}N.~Adam {\it and al}, ``Towards a Measurement of the Inclusive $W\rightarrow e\nu$ and $Z\rightarrow ee$ Cross Section in pp Collisions at sqrt(s) = 14 TeV'', CMS~AN-2007/026
103 + \bibitem{TP}G.~Daskalakis, D.~Evans, C.S.~Hill, J.~Jackson, P.~Vanlaer, J.~Berryhill, J.~Haupt, D.~Futyan, C.~Seez, C.~Timlin, D.~Wardrope, ``Measuring Electron Efficiencies at CMS with Early Data'', CMS~AN-2007/019
104 + \bibitem{OldNote}V.~Brigljevic, D.~Ferencek, S.~Morovic, M.~Planinic, A.~Oh ``Study of the process $pp\rightarrow WZ \rightarrow 3l$ at CMS'', CMS~AN-2006/063
105 +
106 +
107 + %\bibitem{PTDR1} CMS Collaboration, Physics Technical Design Report, Vol.1 - Detector Performance and Software, CERN/LHCC 2006-001 (February 2006).
108 + \end{thebibliography}
109 +
110   \end{document}

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