First outline

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Eric Teunis de Boone 2023-03-07 12:06:56 +01:00
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\begin{document} \begin{document}
\frame{\titlepage} \frame{\titlepage}
\begin{frame}{Enhancing time accuracy} %%%%%
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\section{Cosmic Rays}
\begin{frame}{Particles from space}
\end{frame} \end{frame}
\begin{notes}
- Ultra energy, solid idea for source missing
\end{notes}
\begin{frame}{Airshowers}
\end{frame}
\begin{notes}
- Coming into atmosphere, trying to measure particle debris
through Cherenkov light.
- FD/SD
\end{notes}
\begin{frame}{Airshowers: Radio Detection}
\end{frame}
\begin{notes}
measurables of RD: EM
\end{notes}
\begin{frame}{Airshowers: Interferometric Radio Detection}
\end{frame}
\begin{notes}
Can reconstruct spatial distribution
Requires sigma < 1 ns
\end{notes}
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\section{Experimental problem}
\begin{frame}{Experiments: Autonomous antennas}
\end{frame}
\begin{notes}
Introduce GRAND and Auger
\end{notes}
\begin{frame}{Experiments: GNSS timing}
\end{frame}
\begin{notes}
Note timing accuracy obtained in Auger
\end{notes}
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\section{Improving time synchronisation}
\begin{frame}{Improving time synchronisation}
\end{frame}
\be
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\subsection{Can GNSS be improved}
% Hardware setups WR / GRAND
\begin{frame}{Improving GNSS timing}
\end{frame}
%%%%%
\subsection{Other methods to improve timing}
% mixing clock information with physics
\begin{frame}{Beacon}
\end{frame}
\end{document} \end{document}