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prepared talks for the 2021 version
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presentations/01/talk.tex

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\graphicspath{{fig/}}
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\usepackage[export]{adjustbox}
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\institute[2018, Nick R. Papior; DTU Nanotech]{\begin{tikzpicture}
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\institute[Nick Papior; DTU Compute]{\begin{tikzpicture}
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\node[shape=rectangle split,rectangle split parts=2,anchor=base] at (0,0)
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{DTU: sisl, TBtrans and TranSiesta workshop};
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\end{tikzpicture}}
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\date{20. November 2018}
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\date{17 May 2021}
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\title{Non-equilibrium Green function theory: 1 \& 2}
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\author{Nick R. Papior}
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\author{Nick Papior}
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\begin{document}
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\titlepage
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\end{frame}
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\begin{frame}
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\frametitle{Practical information}
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\small
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\begin{itemize}[<+->]
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\item Toilets: out to the left
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\item Danish tap water is safe to drink, don't waste money on buying expensive bottled
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water
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\item Start at 9 each day, sandwiches at 12 (no sandwiche Friday), cake at 14/15
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\item Poster session Wednesday at 17:30 in 341/342, dinner at 19:00
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\item Teaching assistants, Susanne and Gaetano
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\item Please ask questions during the workshop, you are here to learn!
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\item If there are things not covered in the tutorial, please ask and I will try and
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prepare a \emph{mini} tutorial for the last day
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\end{itemize}
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\uncover<+->{
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\begin{center}
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\large
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sisl is \emph{not} a static code! It evolves due to comments of users, so if you
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have a comment/suggestion/correction, please do so!
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\end{center}
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}
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\end{frame}
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\begin{frame}
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\frametitle{Outline}
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\tableofcontents

presentations/02/talk.tex

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\graphicspath{{fig/}}
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\institute[2018, Nick R. Papior; DTU Nanotech]{\begin{tikzpicture}
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\institute[Nick Papior; DTU Compute]{\begin{tikzpicture}
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\node[shape=rectangle split,rectangle split parts=2,anchor=base] at (0,0)
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{DTU: sisl, TBtrans and TranSiesta workshop};
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\end{tikzpicture}}
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\date{21. November 2018}
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\date{17 May 2021}
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\title{Siesta and sisl analysis}
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\author{Nick R. Papior}
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\author{Nick Papior}
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\begin{document}
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\begin{block}{sisl}
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\begin{description}
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\item[-] Not all utilities are present
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\item[-] Macroave not present
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\item[+] A unified interface for post-processing
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\item[+] Easy to extend due to simpler programming language
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\item[+] Many functionalities present, and some utilities has more flexibility

presentations/03/talk.tex

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\graphicspath{{fig/}{fig-defence/}{paper-fig/}}
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\usepackage[export]{adjustbox}
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\institute[2018, Nick R. Papior; DTU Nanotech]{\begin{tikzpicture}
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\institute[Nick Papior; DTU Compute]{\begin{tikzpicture}
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\node[shape=rectangle split,rectangle split parts=2,anchor=base] at (0,0)
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{DTU: sisl, TBtrans and TranSiesta workshop};
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\end{tikzpicture}}
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\date{21. November 2018}
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\date{17 May 2021}
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\title{Introduction to TranSiesta and NEGF}
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\author{Nick R. Papior}
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\author{Nick Papior}
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\begin{document}
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presentations/04/hartree.tex

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The electrode Hartree potential are the boundary conditions.
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In TranSiesta this is accomplished by fixing the electrostatic potential at one of the
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electrode planes (the plane farthest from the device region).
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electrode planes.
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\begin{itemize}
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\item For $N_\idxE=2$ and aligned semi-infinite directions the potential profile can
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is. The guess is the Poisson solution \emph{without} charges, only the
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boundary conditions.}}
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\item \sisl\ has a tool to ease this. \shell{stoolbox ts-fft} may be used to
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create a better boundary condition as direct input for TranSiesta.
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\end{itemize}
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\end{itemize}
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presentations/04/talk.tex

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\graphicspath{{fig/}{../fig/}}
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\institute[2018, Nick R. Papior; DTU Nanotech]{\begin{tikzpicture}
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\institute[Nick Papior; DTU Compute]{\begin{tikzpicture}
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\node[shape=rectangle split,rectangle split parts=2,anchor=base] at (0,0)
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{DTU: sisl, TBtrans and TranSiesta workshop};
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\end{tikzpicture}}
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\date{22. November 2018}
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\date{17 May 2021}
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\title{$N_\idxE>2$ NEGF calculations using TranSiesta}
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\author{Nick R. Papior}
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\author{Nick Papior}
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\begin{document}
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