m-thesis-documentation/presentations/2023-03-13_step_up_interview/2023-STEP_UP.tex

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\documentclass[showdate=false]{beamer}
\usepackage[british]{babel}
\usepackage{amsmath}
\usepackage{hyperref}
\usepackage[backend=bibtex,style=trad-plain]{biblatex}
\usepackage{appendixnumberbeamer}
\usepackage{graphicx}
\graphicspath{{.}{./figures/}{../../figures/}}
\usepackage{todo}
\addbibresource{../../../bibliotheca/bibliography.bib}
% Disable Captions
\setbeamertemplate{caption}{\raggedright\small\insertcaption\par}
% no to navigation, yes to frame numbering
\beamertemplatenavigationsymbolsempty
\setbeamerfont{page number in head/foot}{size=\normalsize}
\setbeamertemplate{footline}[frame number]
\title[]{}
\date{March $13^{\text{\tiny{th}}}$, 2023}
\author{E.T. de Boone}
\begin{document}
\frame{\titlepage}
% Context
%%%%%%%%%
\begin{frame}{Airshowers from Ultra High Energy particles}
Processes in the cosmos can produce UHE particles
\end{frame}
\begin{frame}{Radio signals and Airshowers}
Airshower split into EM, Muon and Hadron
\begin{columns}
\begin{column}{0.4\textwidth}
\end{column}
\begin{column}{0.6\textwidth}
\begin{figure}
\centering
\includegraphics[width=\textwidth]{1607.08781/fig02a_airshower+detectors.png}
\caption{
\cite{Schroder:2016hrv}
}
\end{figure}
\end{column}
\end{columns}
\end{frame}
\begin{frame}{Radio Interferometry}
\begin{columns}
\begin{column}{0.4\textwidth}
\includegraphics[width=\textwidth]{Schematic_RIT_extracted.png}
\end{column}
\begin{column}{0.5\textwidth}
\begin{figure}
\includegraphics[width=\textwidth]{2006.10348/fig01.png}
\caption{
\cite{Schoorlemmer:2020low}
}
\end{figure}
\end{column}
\end{columns}
\end{frame}
% My Internship
%%%%%%%%%%%%%%%
\begin{frame}{Timing Constraint for Radio Interferometry}
RI requires $\sigma_t < 1 \mathrm{ns}$\\
GPS clock accuracy in current experiments not enough, with $\sigma_t \sim 8\mathrm{ns}$\\
\vskip 1em
$\mapsto$ my internship
\\
hardware delays\\
beacon simulations
\end{frame}
% Towards GRAND
%%%%%%%%%%%%%%%%%%%%
\begin{frame}{Advantages of Radio Interferometry}
trace airshower longitudinal development\\
lower snr threshold
\end{frame}
\begin{frame}{Physics Improvement of Radio Interferometry}
composition measurement\\
\vskip 1em
direction reconstruction improved\\
relevance for $\nu$s pointing back to sources
\end{frame}
%%%%%%%%%%%%%%%
% Backup slides
%%%%%%%%%%%%%%%
\appendix
\frame{Back-up slides}
%%%%%%%%%%%%%%
% Bibliography
%%%%%%%%%%%%%%
\section*{References}
\begin{frame}{References}
\printbibliography
\end{frame}
\end{document}