source: Backup NB/Talks/MEMPHYSetal/MEMPHYS EOI/DetectorPart/MEMPHYSDet.tex @ 391

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1%
2% bibtex is used for bibliography
3% - put your references in file Frejus.bib, in bibtex format
4%   (you can get it directly from spires).
5%   No need to worry about the order of citation
6% - to process file, do
7%       latex Frejus
8%       bibtex Frejus
9%       latex Frejus
10%
11%\documentstyle[12pt,epsfig,amstex,amssymb,here]{article}
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13\usepackage{epsfig,amsmath,amssymb,here,rotating}
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15\usepackage{eurosym}
16%\usepackage{eurosans}
17\newcommand{\modif}[3]{{(\sc{#1})}{\sout{\small #2}}{\bf #3}}
18
19%
20
21\def\dm{\ensuremath{\Delta m}}
22\def\dm2{\ensuremath{\Delta m^{2}\ }}
23\def\sen2th{\ensuremath{ \sin^{2}(2\theta)\ }}
24\def\(({\left(}
25\def\)){\right)}
26
27\def\nubar{$\overline{\nu}\ $}
28\def\nue{\ensuremath{\nu_{e}\ }}
29\def\nubare{\ensuremath{\overline{\nu}_{e}\ }}
30\def\nubarecc{$\overline{\nu}_{e}^{CC}\ $}
31\def\numu{\ensuremath{\nu_{\mu}\ }}
32\def\nubarmu{\ensuremath{\overline{\nu}_{\mu}\ }}
33\def\nubarmucc{$\overline{\nu}_{\mu}^{CC}\ $}
34\def\nutau{\ensuremath{\nu_{\tau}\ }}
35\def\nubartau{\ensuremath{\overline{\nu_{\tau}}\ }}
36\def\nulep{$\nu^{l}\ $}
37\def\nubarlep{$\overline{\nu^{l}}\ $}
38
39\def\nuef{\ensuremath{\nu_{e}}}
40\def\nubarf{\ensuremath{\overline{\nu}}}
41\def\nubaref{\ensuremath{\overline{\nu}_{e}}}
42\def\numuf{\ensuremath{\nu_{\mu}}}
43\def\nubarmuf{\ensuremath{\overline{\nu_{\mu}}}}
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45\def\nubartauf{\ensuremath{\overline{\nu_{\tau}}}}
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47\def\nubarlepf{\ensuremath{\overline{\nu^{l}}}}
48\def\pzero{\ensuremath{\ensuremath{\pi^0\ }}}
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66\newcommand{\chisq}{\ensuremath{\chi^{2}\ }}
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83\newcommand{\mton}{ {\rm Mton} }
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88%\newcommand{\eea}{\end{eqnarray}}
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90\newcommand{\ee}{\end{equation}}
91%
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93\newcommand{\dens}{\mbox{$ cm^{-3}$}}
94%
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102\newcommand{\datm}{\mbox{$\Delta_{atm}^2$}}
103
104%
105\newcommand{\Losc}{\mbox{$L_{osc}$}}
106\newcommand{\mmm}{\mbox{$m_{1}^{2}-m_{2}^{2}$}}
107\newcommand{\stt}{\mbox{$sin^{2}~2\theta $}}
108\newcommand{\dms}{\mbox{$\Delta m^{2}$}}
109\newcommand{\numubar}{\mbox{$\overline{\nu}_{\mu}$}}
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112\newcommand{\muplus}{\mbox{$\mu^{+}$}}
113
114\newcommand{\neb}{\mbox{$\overline{\nu}_{e}$}}
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116\newcommand{\nmb}{\mbox{$\overline{\nu}_{\mu}$}}
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118\newcommand{\ntb}{\mbox{$\overline{\nu}_{\tau}$}}
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121{$\stackrel{\textstyle <}{\textstyle \sim}$}}}
122\newcommand{\gsim}{\mbox{\raisebox{-1.ex}
123{$\stackrel{\textstyle >}{\textstyle \sim}$}}}
124\newcommand{\sstt}      {\sin^2 2\theta}
125%\newcommand{\dms}       {\Delta m^2}
126\newcommand{\degree}    {^{\circ}}
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128\newcommand{\ttbs}{\char'134}
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131\newcommand{\pnuenumu}{\ensuremath{P(\nue \rightarrow \numu)\,}}
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133\newcommand{\nuenumu}{\ensuremath{\nue \rightarrow \numu\,}}
134\newcommand{\numunutau}{\ensuremath{\numu \rightarrow \nutau\,}}
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136\newcommand{\nubarenubarmu}{\ensuremath{\overline{\nu}_e \rightarrow \overline{\nu}_\mu\,}}
137\newcommand{\nubarmunubare}{\ensuremath{\overline{\nu}_\mu \rightarrow \overline{\nu}_e\,}}
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140
141\newcommand{\He}{\ensuremath{^6{\mathrm{He}\,}}}
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146\newcommand{\thetaot}{\ensuremath{\theta_{13}}\,}
147\newcommand{\thetatt}{\ensuremath{\theta_{23}}\,}
148\newcommand{\numunue}{\ensuremath{\nu_\mu \rightarrow \nu_e}}
149\newcommand{\pnuenue}{\ensuremath{P(\nue \rightarrow \nue)}}
150\newcommand{\pnumunue}{\ensuremath{P(\nu_\mu \rightarrow \nu_e)}}
151\newcommand{\pnumunumu}{\ensuremath{P(\nu_\mu \rightarrow \nu_\mu)}}
152\newcommand{\pnubarenubarmu}{\ensuremath{P(\overline{\nu}_e \rightarrow \overline{\nu}_\mu\)\,}}
153\newcommand{\pnubarmunubare}{\ensuremath{P(\overline{\nu}_\mu \rightarrow \overline{\nu}_e)\,}}
154\newcommand{\dmsun}{\ensuremath{\Delta m^2_{sun}\ }}
155\newcommand{\dmatm}{\ensuremath{\Delta m^2_{atm}}}
156\newcommand{\nueovernumu}{\ensuremath{\nue/\numu}}
157\newcommand{\sigdm}{\ensuremath{{\rm sign}(\Delta m^2_{23})\ }}
158%\newcommand{\delCP}{\ensuremath{\delta_{\rm CP}}}
159\newcommand{\delCP}{\ensuremath{\delta_{\rm CP}\ }}
160
161\newcommand{\stheta}{\sin^22\theta_{13}}
162\newcommand{\deltacp}{\delta_\mathrm{CP}}
163
164\def\He{\ensuremath{^6{\mathrm{He}}}}
165\def\Li{\ensuremath{^6{\mathrm{Li}}}}
166\def\Ne{\ensuremath{^{18}{\mathrm{Ne}}}}
167\def\anue{\ensuremath{\overline{{\mathrm\nu}}_{\mathrm e}}}
168\def\anumu{\ensuremath{\overline{{\mathrm\nu}}_{\mathrm \mu}}}
169\def\numunue{\ensuremath{\mbox{$\nu_\mu \rightarrow \nu  e$}}}
170
171%
172%
173\newcommand{\REDBLA}[1]{\red {#1} \black}
174%
175\def\mc2{\multicolumn{2}{c|}}
176%
177%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
178
179\input{style.tex}
180
181\begin{document}
182
183\bibliographystyle{JHEP}
184
185%\vspace*{2cm}
186
187\begin{center}
188{\bf \Large MEMPHYS\,:}
189
190\vspace{0.2cm} 
191
192{\bf \Large A large scale water \v{C}erenkov detector at Fr\'ejus}
193
194%\vspace{0.5cm}
195%{\bf Preliminary }
196
197%\vspace{1.5cm}
198%{\bf Contribution to the CERN strategic committee} \\
199%Orsay, 30/01/2006
200\end{center}
201
202\input{detector.tex}
203
204\newpage
205\bibliography{MEMPHYS}
206\end{document}
207
208
209
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