mirror of
https://gitlab.science.ru.nl/mthesis-edeboone/m.internship-documentation.git
synced 2024-11-22 23:13:35 +01:00
198 lines
5.1 KiB
TeX
198 lines
5.1 KiB
TeX
% vim: fdm=marker fmr=<<<,>>>
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%%
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%% Thesis Preamble
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%%
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%% <<< Packages
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%%
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% For Bibliography
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\usepackage[sorting=none,natbib=true,citestyle=numeric-comp,backend=bibtex]{biblatex}
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% Document
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\usepackage{amsmath}
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\usepackage{mathtools}
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%\usepackage{cancel}
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\usepackage{todo}
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% Graphics
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\usepackage{placeins}
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\usepackage{xcolor}
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\usepackage{graphicx}
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\usepackage{epstopdf}
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\usepackage{caption}
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\usepackage{subcaption}
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\captionsetup{subrefformat=parens}
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\usepackage[colorlinks=true]{hyperref}
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\usepackage{cleveref}
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\usepackage{grffile}
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\usepackage{physics}
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\usepackage[english]{babel} % for proper word breaking at line ends
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\usepackage[switch]{lineno}
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\usepackage[acronym]{glossaries}
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\glsdisablehyper
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%\usepackage{listings}
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\usepackage{csquotes}
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\usepackage[defaultlines=3,all]{nowidow}
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\usepackage[margin=1.0in]{geometry}
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\usepackage[nobottomtitles*]{titlesec}
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\usepackage{subfiles}
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%% >>>
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\newcommand{\email}[1]{\href{mailto:#1}{#1}}
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%% <<< Layout
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%%
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\titleformat{\chapter}[hang] % shape
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{\normalfont\bfseries\huge} % format
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{\thechapter.} % label
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{0.5ex} % sep
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{
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} % before-code
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[
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] % after-code
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\setlength{\parindent}{0cm}
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%\DeclareRobustCommand{\thefootnote}{\alph{footnote}} % alphabetic footnote markers
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%% Automatic float barriers for section and subsection
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\let\Oldsection\section
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\renewcommand{\section}{\FloatBarrier\Oldsection}
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%\let\Oldsubsection\subsection
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%\renewcommand{\subsection}{\FloatBarrier\Oldsubsection}
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%\let\Oldsubsubsection\subsubsection
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%\renewcommand{\subsubsection}{\FloatBarrier\Oldsubsubsection}
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%% >>>
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%% <<< Shortcuts
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%%
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\newcommand*{\captionsource}[2]{%
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\caption[{#1}]{%
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#1%
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\\\hspace{\linewidth}%
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\textbf{Source:} #2%
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}%
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}
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% <<<< Math
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\newcommand{\dif}[1]{\mathop{}\!\mathrm{d} #1}
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\newcommand{\pdif}[1]{\mathop{}\!\mathrm{\partial} #1}
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\newcommand{\dbyd}[2]{\ensuremath{\mathrm{d}{#1}/\mathrm{d}{#2}}}
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\DeclareMathOperator{\Corr}{Corr}
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%\DeclareMathOperator{\erf}{erf}
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\DeclareMathOperator{\argmax}{argmax}
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\DeclareMathOperator{\arctantwo}{arctan2}
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\DeclareRobustCommand{\eexp}[1]{\ensuremath{e^{#1}}}
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\DeclareRobustCommand{\expOf}[1]{\ensuremath{\exp{\!\left(#1\right)}}}
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\DeclareRobustCommand{\ofOrder}[1]{\ensuremath{\mathcal{O}\left(#1\right)}}
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% >>>>
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% <<<< Units
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\newcommand{\eV}{\text{\,e\kern-0.15exV}}
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\newcommand{\MeV}{\text{\,M\!\eV}}
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\newcommand{\GeV}{\text{\,G\!\eV}}
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\newcommand{\TeV}{\text{\,T\!\kern-0.1ex\eV}}
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\newcommand{\metre}{\text{\,m}}
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\newcommand{\mV}{\text{\,m\kern-0.1exV}}
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\newcommand{\uV}{\text{\,\textmu\kern-0.1exV}}
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\newcommand{\uVperm}{\text{\uV\kern-0.2ex/\kern-0.1ex\!\metre}}
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\newcommand{\ns}{\text{\,ns}}
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\newcommand{\us}{\text{\,\textmu s}}
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\newcommand{\kHz}{\text{\,kHz}}
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\newcommand{\MHz}{\text{\,MHz}}
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\newcommand{\GHz}{\text{\,GHz}}
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% >>>>
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% <<<< Quantities
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% Notes:
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% \tau is a measured/apparent quantity
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% t is true time
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% priming is required for moving with the signal / different reference frame
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\newcommand{\beaconfreq}{\ensuremath{f_\mathrm{beacon}}}
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\newcommand{\fbeacon}{\ensuremath{f_\mathrm{beacon}}}
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\newcommand{\Xmax}{\ensuremath{X_\mathrm{max}}}
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\newcommand{\phase}{\varphi} % deprecated
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\newcommand{\tTime}{t} % deprecated
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%% time variables
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\newcommand{\tTrue}{t}
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\newcommand{\tMeas}{\tau}
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\newcommand{\tRes}{\tTrue_\mathrm{res}}
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\newcommand{\tResidual}{\tRes}
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\newcommand{\tTrueTrue}{\tTrue_\mathrm{true}}
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\newcommand{\tTrueEmit}{\tTrue_0}
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\newcommand{\tTrueArriv}{\tTrueEmit'}
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\newcommand{\tMeasArriv}{\tMeas_0}
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\newcommand{\tProp}{\tTrue_d}
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\newcommand{\tClock}{\tTrue_c}
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\newcommand{\tClockPhase}{\ensuremath{\tTrue_\phase}}
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\newcommand{\tClockPeriod}{\ensuremath{k T}}
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%% phase variables
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\newcommand{\pTrue}{\phi}
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\newcommand{\PTrue}{\Phi}
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\newcommand{\pMeas}{\varphi}
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\newcommand{\pRes}{\pTrue_\mathrm{res}}
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\newcommand{\pResidual}{\pRes}
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\newcommand{\pTrueTrue}{\pTrue_\mathrm{true}}
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\newcommand{\pTrueEmit}{\pTrue_0}
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\newcommand{\pTrueArriv}{\pTrueArriv'}
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\newcommand{\pMeasArriv}{\pMeas_0}
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\newcommand{\pProp}{\pTrue_d}
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\newcommand{\pClock}{\pTrue_c}
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%% >>>>
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%% >>>
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%% <<< Acronyms
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%%
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\newacronym{GNSS}{GNSS}{Global Navigation Satellite System}
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\newacronym{EAS}{EAS}{Extensive Air Shower}
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\newacronym{UHE}{UHE}{Ultra High Energy}
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\newacronym{UHECR}{UHECR}{\acrlong{UHE} Cosmic Ray}
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\newacronym{DU}{DU}{Detector Unit}
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\newacronym{PPS}{PPS}{Pulse Per Second}
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%% <<<< Names
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\newacronym{GRAND}{GRAND}{Giant Radio Array for Neutrino Detection}
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\newacronym{BEACON}{BEACON}{Beamforming Elevated Array for COsmic Neutrinos}
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\newacronym{LOFAR}{LOFAR}{Low-Frequency Array}
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\newacronym{PA}{PA}{Pierre~Auger}
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\newacronym{PAObs}{PAO}{Pierre~Auger Observatory}
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\newacronym{Auger}{Auger}{\acrlong{PAObs}}
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\newacronym{AugerPrime}{AugerPrime}{AugerPrime}
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\newacronym{AERA}{\textsc{AERA}}{Auger Engineering Radio~Array}
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\newacronym{ADC}{\textsc{ADC}}{Analog-to-Digital~Converter}
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\newacronym{ZHAireS}{ZHAireS}{ZHAireS}
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%% >>>>
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%% <<<< Math
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\newacronym{DTFT}{\textsc{DTFT}}{Discrete Time Fourier Transform}
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\newacronym{DFT}{\textsc{DFT}}{Discrete Fourier Transform}
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\newacronym{FFT}{\textsc{FFT}}{Fast Fourier Transform}
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\newacronym{FT}{\textsc{FT}}{Fourier Transform}
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\newacronym{RMS}{\textsc{RMS}}{root-mean-square}
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\newacronym{SNR}{\textsc{SNR}}{signal-to-noise ratio}
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%% >>>>
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%% >>>
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