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FCCee_MDI_Aug23.tex.backup
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FCCee_MDI_Aug23.tex.backup
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\documentclass[8pt]{beamer}
\newif\ifplacelogo % create a new conditional
\placelogotrue % set it to true
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\usecolortheme{rose}
\usepackage{multicol}
\usepackage{epstopdf}
\usepackage[italic]{hepnames}
\usepackage{tikz}
\usepackage{listings}
\usepackage{times}
\usepackage{amsmath}
\usepackage{verbatim}
\usepackage{hyperref}
\usepackage{bbding}
\lstset{breakatwhitespace,
language=C++,
columns=fullflexible,
keepspaces,
breaklines,
tabsize=3,
showstringspaces=false,
extendedchars=true}
% TikZ includes!!!
\usepackage{tikz}
\usetikzlibrary{backgrounds}
\usetikzlibrary{calc}
\tikzstyle{every picture}+=[remember picture]
\input{/home/oviazlo/Desktop/beamerPresentations/myReports/latexHelpScripts/tikzGrid.tex}
\begin{document}
% custom colors
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% poster advertisement
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\definecolor{light-gray}{gray}{0.95}
% poster advertisement
\title[ ECAL Photon performance \hspace{13.5em}\insertframenumber/
\inserttotalframenumber]{ ECAL Photon performance }
\author[Oleksandr Viazlo]{Oleksandr Viazlo \\
% {\small ???}
}
\institute{\small CERN\\}
\date{23 August 2017}
% \logo{ \ifplacelogo \includegraphics[height=1.8cm]{./ID_week2/lund_uni-logo_s.pdf} \hspace{0.4cm} \fi}
\frame{\titlepage}
\placelogofalse
%*****************************************************************************
\begin{frame}{\large \large Introduction}
\begin{itemize}
\item First look on ECAL photon performance\\ \vspace{0.3cm}
\item Early results - work in progress
\end{itemize}
\end{frame}
%*****************************************************************************
%*****************************************************************************
\begin{frame}{\large \large Calibration}
\begin{itemize}
\item Calibration input - particle gun samples produced uniformly distributed in phi and cos($\theta$) of:
\begin{itemize}
\item 50 GeV K$^0_L$
\item 10 GeV $\mu^-$
\item 10 GeV photons \\ \vspace{0.3cm}
\end{itemize}
\item New photon likelihood file was obtained for with sample of hadronically decaying Z-boson at 380 GeV\\ \vspace{0.3cm}
\item Calibration was done for FCCee$\_$o5$\_$v04 detector model and with ILCSoft-2017-07-27 sw release\\ \vspace{0.3cm}
\item Calibration is done with DD4hepDetCalibration package (based on ILD calibration, used for CLIC)\\ \vspace{0.3cm}
\end{itemize}
\end{frame}
%*****************************************************************************
%*****************************************************************************
\begin{frame}{\large \large Photon Energy Resolution}
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% \node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne-1.9)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
\node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
{\includegraphics[width=7cm]{energyResolution_energy.pdf}};
\node[inner sep=0pt] (tmp) at (\xRefPosOne+6,\yRefPosOne)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
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%
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% \myCenterBox{theta 80}
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%
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\begin{minipage}{0.7\textwidth}
\begin{itemize}
\item Energy resolution is similar to the CLIC one
\end{itemize}
\end{minipage}
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%
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%*****************************************************************************
%*****************************************************************************
\begin{frame}{\large \large Reconstructed energy}
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\begin{tikzpicture}[overlay]
% \node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne-1.9)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
\node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne+1.2)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
{\includegraphics[width=7cm]{dEFit_E10_theta80.pdf}};
\node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne-2.9)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
{\includegraphics[width=7cm]{dEFit_E100_theta80.pdf}};
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\myCenterBox{10 GeV}
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\node [Box] at (\xRefPosOne+6,\yRefPosOne) (box){%
\begin{minipage}{0.5\textwidth}
\begin{itemize}
\item Bias of the reconstructed energy wrt to truth photon energy \\ \vspace{1cm}
\item Effect is also observed for CLIC detector (1.8$\%$ at 100 GeV)
\end{itemize}
\end{minipage}
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%% HELPER draw advanced helping grid with axises:
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%*****************************************************************************
%*****************************************************************************
\begin{frame}{\large \large Photon Energy Scale Bias}
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% \node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne-1.9)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
\node[inner sep=0pt] (tmp) at (\xRefPosOne,\yRefPosOne)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
{\includegraphics[width=6.5cm]{energyScaleBias_energy.pdf}};
\node[inner sep=0pt] (tmp) at (\xRefPosOne+6,\yRefPosOne)
% {\includegraphics[width=12cm]{CLIC_vs_FCCee_trackingSystem.png}};
{\includegraphics[width=6.5cm]{energyScaleBias_theta.pdf}};
%
% \node [Box] at (\xRefPosOne,\yRefPosOne+1.5) (box){%
% \myCenterBox{FCCee}
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%
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%
\node [Box] at (\xRefPosOne+1,\yRefPosOne-3) (box){%
\begin{minipage}{0.7\textwidth}
\begin{itemize}
\item Energy scale bias depends both from energy and direction ($\theta$)
\item Need further investigation
\end{itemize}
\end{minipage}
};
%
%% HELPER draw advanced helping grid with axises:
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%*****************************************************************************
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