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STEP-UP: various alignment + remove Xmax accuracy figure
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1 changed files with 10 additions and 14 deletions
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@ -99,6 +99,7 @@
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\begin{frame}{Advantages of Radio Interferometry}
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\begin{columns}
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\begin{column}{0.53\textwidth}
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Interferometric Radio Observables:
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\begin{itemize}
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\item<1-> Shower axis reconstruction%\; Relevant for $\nu$s pointing back to sources
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\vspace*{2em}
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@ -110,17 +111,15 @@
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\end{column}
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\begin{column}{0.47\textwidth}
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\begin{figure}
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\includegraphics<1,2>[width=\textwidth]{2006.10348/fig01.png}
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\includegraphics<3>[width=\textwidth]{2006.10348/fig03_b.png}
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%\includegraphics<2>[width=\textwidth]{1607.08781/fig02b_longitudinal_shower_profile.png}
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\only<1,2>{\caption[caption]{
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\includegraphics[width=\textwidth]{2006.10348/fig01.png}
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\caption[caption]{
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\centering
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\tiny{
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% From: \cite{Schoorlemmer:2020low}
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orange dot: true shower axis;\hspace{\textwidth}
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blue dot: maximum in map
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}
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}}
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}
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\end{figure}
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\end{column}
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\end{columns}
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@ -134,10 +133,10 @@
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\begin{columns}
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\begin{column}{0.4\textwidth}
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\begin{figure}
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\includegraphics<1>[width=\textwidth]{radio_interferometry/rit_schematic_base.pdf}
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\includegraphics<2>[width=\textwidth]{radio_interferometry/rit_schematic_far.pdf}
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\includegraphics<3>[width=\textwidth]{radio_interferometry/rit_schematic_close.pdf}
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\includegraphics<4>[width=\textwidth]{radio_interferometry/rit_schematic_true.pdf}
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\includegraphics<1>[width=\textwidth]{radio_interferometry/rit_schematic_base.pdf}%
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\includegraphics<2>[width=\textwidth]{radio_interferometry/rit_schematic_far.pdf}%
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\includegraphics<3>[width=\textwidth]{radio_interferometry/rit_schematic_close.pdf}%
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\includegraphics<4>[width=\textwidth]{radio_interferometry/rit_schematic_true.pdf}%
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\end{figure}
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\end{column}
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\begin{column}{0.6\textwidth}
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@ -146,15 +145,13 @@
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\item<1-> Measure signal $S_i(t)$ at antenna $\vec{a_i}$
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\item<2-> Calculate light travel time \\[5pt]
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$\Delta_i(\vec{x}) = \frac{ \left| \vec{x} - \vec{a_i} \right| }{c} n_{eff}$
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\quad $\Delta_i(\vec{x}) = \frac{ \left| \vec{x} - \vec{a_i} \right| }{c} n_{eff}$
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\item<2-> Sum waveforms accounting \\
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for time delay \\[5pt]
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$S(\vec{x}, t) = \sum S_i( t + \Delta_i(\vec{x}) )$
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\quad $S(\vec{x}, t) = \sum S_i( t + \Delta_i(\vec{x}) )$
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\end{itemize}
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\vspace*{\fill}
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\begin{figure}% Spatially
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\includegraphics<1>[width=0.8\textwidth]{radio_interferometry/single_trace.png}%
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\includegraphics<2>[width=0.8\textwidth]{radio_interferometry/trace_overlap_bad.png}%
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@ -260,7 +257,6 @@
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\end{figure}
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\end{column}
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\end{columns}
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\end{frame}
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