source: Backup NB/Talks/MEMPHYSetal/GlobesFlux.tex @ 406

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1\documentclass [12pt]{article}
2\usepackage[latin1]{inputenc}
3\setlength {\textwidth}{14cm}
4\setlength {\textheight}{19cm}
5\renewcommand{\baselinestretch}{1.25}
6%\topmargin -1cm
7%\oddsidemargin -5pt
8%\evensidemargin -5pt
9\begin{document}
10  \title{ {
11        Flux normalization in GLoBES 2.0.11
12  } }
13        \author{J.E Campagne - LAL}
14  \maketitle
15%
16\section*{Introduction}
17The present situation is the following: we use the files sploptiplusmauro.dat (sploptiminusmauro.dat) which are fluxes ($dN(E)$) expressed in terms of numbers of neutrino species per $100 m^2$ per year and binned every $BWF\equiv0.02GeV$ and computed at $L=130km$.
18
19Internally, GLoBES v2.0.11 uses these fluxes with some {\it a priori} and at the end of the day it turns out that:
20\begin{equation}
21        dN(E)\times \frac{1}{L^2} \times \mathrm{norme2}(0) \times \mathrm{@norm} \times \Delta T
22\end{equation}
23with $\mathrm{norme2}(0) = 5.198927 = 6.02204 10^{-12}\ 295^2\ 9.92033 10^6$ the result of a function in \verb|glb_fluxes.c|.
24
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26
27\end{document}
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