\documentclass[12pt]{article}

\usepackage{gamelan}
\usepackage{amsmath}

\begin{document}
\begin{gmlfile}

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\end{gmlcode}

%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\noindent\textbf{\large\texttt{WHIZARD} data analysis}\hfill\today
\begin{flushleft}
\textbf{Process:} 
  \verb|zz_sl0nu_up| ($ e^- e^+ \to \nu_\mu \bar\nu_\mu u \bar{u}$)
, $ e^- e^+ \to \nu_\mu \bar\nu_\mu c \bar{c}$)
, $ e^- e^+ \to \nu_\tau \bar\nu_\tau u \bar{u}$)
, $ e^- e^+ \to \nu_\tau \bar\nu_\tau c \bar{c}$)
\\
\end{flushleft}
%
\begin{displaymath}
  \sqrt{s} =   500.0    \;\textrm{GeV}\qquad
  \int\mathcal{L} =   500.0    \;\textrm{fb}^{-1}
\end{displaymath}
%
\begin{align*}
  \sigma_{\rm tot} &=   45.755     \quad \pm  0.105    \;\textrm{fb}
   \quad [\pm    0.23\;\%]
 & n_{\rm evt,\ tot} &=        22861
 \\
  \sigma_{\rm cut} &=   45.755     \quad \pm  0.303    \;\textrm{fb}
   \quad [\pm    0.66\;\%]
 & n_{\rm evt,\ cut} &=        22861  \quad 
  [  100.00 \;\%]
\end{align*}
%
%
\newpage
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\noindent\textbf{\large\texttt{WHIZARD} data analysis}\hfill\today
\begin{flushleft}
\textbf{Process:} 
  \verb|zz_sl0tau_down| ($ e^- e^+ \to \tau^- \tau^+ d \bar{d}$)
, $ e^- e^+ \to \tau^- \tau^+ s \bar{s}$)
, $ e^- e^+ \to \tau^- \tau^+ b \bar{b}$)
\\
\end{flushleft}
%
\begin{displaymath}
  \sqrt{s} =   500.0    \;\textrm{GeV}\qquad
  \int\mathcal{L} =   500.0    \;\textrm{fb}^{-1}
\end{displaymath}
%
\begin{align*}
  \sigma_{\rm tot} &=   36.764     \quad \pm  0.863E-01\;\textrm{fb}
   \quad [\pm    0.23\;\%]
 & n_{\rm evt,\ tot} &=        18451
 \\
  \sigma_{\rm cut} &=   36.764     \quad \pm  0.271    \;\textrm{fb}
   \quad [\pm    0.74\;\%]
 & n_{\rm evt,\ cut} &=        18451  \quad 
  [  100.00 \;\%]
\end{align*}
%
%
\newpage
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\noindent\textbf{\large\texttt{WHIZARD} data analysis}\hfill\today
\begin{flushleft}
\textbf{Process:} 
  \verb|zz_sl0mu_down| ($ e^- e^+ \to \mu^- \mu^+ d \bar{d}$)
, $ e^- e^+ \to \mu^- \mu^+ s \bar{s}$)
, $ e^- e^+ \to \mu^- \mu^+ b \bar{b}$)
\\
\end{flushleft}
%
\begin{displaymath}
  \sqrt{s} =   500.0    \;\textrm{GeV}\qquad
  \int\mathcal{L} =   500.0    \;\textrm{fb}^{-1}
\end{displaymath}
%
\begin{align*}
  \sigma_{\rm tot} &=   66.119     \quad \pm  0.226    \;\textrm{fb}
   \quad [\pm    0.34\;\%]
 & n_{\rm evt,\ tot} &=        33087
 \\
  \sigma_{\rm cut} &=   66.119     \quad \pm  0.363    \;\textrm{fb}
   \quad [\pm    0.55\;\%]
 & n_{\rm evt,\ cut} &=        33087  \quad 
  [  100.00 \;\%]
\end{align*}
%
%
\newpage
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\noindent\textbf{\large\texttt{WHIZARD} data analysis}\hfill\today
\begin{flushleft}
\textbf{Process:} 
  \verb|zz_sl0nu_down| ($ e^- e^+ \to \nu_\mu \bar\nu_\mu d \bar{d}$)
, $ e^- e^+ \to \nu_\mu \bar\nu_\mu s \bar{s}$)
, $ e^- e^+ \to \nu_\mu \bar\nu_\mu b \bar{b}$)
, $ e^- e^+ \to \nu_\tau \bar\nu_\tau d \bar{d}$)
, $ e^- e^+ \to \nu_\tau \bar\nu_\tau s \bar{s}$)
, $ e^- e^+ \to \nu_\tau \bar\nu_\tau b \bar{b}$)
\\
\end{flushleft}
%
\begin{displaymath}
  \sqrt{s} =   500.0    \;\textrm{GeV}\qquad
  \int\mathcal{L} =   500.0    \;\textrm{fb}^{-1}
\end{displaymath}
%
\begin{align*}
  \sigma_{\rm tot} &=   72.172     \quad \pm  0.164    \;\textrm{fb}
   \quad [\pm    0.23\;\%]
 & n_{\rm evt,\ tot} &=        36051
 \\
  \sigma_{\rm cut} &=   72.172     \quad \pm  0.380    \;\textrm{fb}
   \quad [\pm    0.53\;\%]
 & n_{\rm evt,\ cut} &=        36051  \quad 
  [  100.00 \;\%]
\end{align*}
%
%
\newpage
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\noindent\textbf{\large\texttt{WHIZARD} data analysis}\hfill\today
\begin{flushleft}
\textbf{Process:} 
  \verb|zz_sl0tau_up| ($ e^- e^+ \to u \bar{u} \tau^- \tau^+$)
, $ e^- e^+ \to c \bar{c} \tau^- \tau^+$)
\\
\end{flushleft}
%
\begin{displaymath}
  \sqrt{s} =   500.0    \;\textrm{GeV}\qquad
  \int\mathcal{L} =   500.0    \;\textrm{fb}^{-1}
\end{displaymath}
%
\begin{align*}
  \sigma_{\rm tot} &=   23.866     \quad \pm  0.517E-01\;\textrm{fb}
   \quad [\pm    0.22\;\%]
 & n_{\rm evt,\ tot} &=        11983
 \\
  \sigma_{\rm cut} &=   23.866     \quad \pm  0.218    \;\textrm{fb}
   \quad [\pm    0.91\;\%]
 & n_{\rm evt,\ cut} &=        11983  \quad 
  [  100.00 \;\%]
\end{align*}
%
%
\newpage
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\noindent\textbf{\large\texttt{WHIZARD} data analysis}\hfill\today
\begin{flushleft}
\textbf{Process:} 
  \verb|zz_sl0mu_up| ($ e^- e^+ \to u \bar{u} \mu^- \mu^+$)
, $ e^- e^+ \to c \bar{c} \mu^- \mu^+$)
\\
\end{flushleft}
%
\begin{displaymath}
  \sqrt{s} =   500.0    \;\textrm{GeV}\qquad
  \int\mathcal{L} =   500.0    \;\textrm{fb}^{-1}
\end{displaymath}
%
\begin{align*}
  \sigma_{\rm tot} &=   43.687     \quad \pm  0.131    \;\textrm{fb}
   \quad [\pm    0.30\;\%]
 & n_{\rm evt,\ tot} &=        21748
 \\
  \sigma_{\rm cut} &=   43.687     \quad \pm  0.296    \;\textrm{fb}
   \quad [\pm    0.68\;\%]
 & n_{\rm evt,\ cut} &=        21748  \quad 
  [  100.00 \;\%]
\end{align*}
%
%

\end{gmlfile}
\end{document}
