Project-4/latex/ising_model.tex
2023-11-30 15:24:05 +01:00

104 lines
3.1 KiB
TeX

\documentclass[english,notitlepage,reprint,nofootinbib]{revtex4-1} % defines the basic parameters of the document
%
% For preview: skriv i terminal: latexmk -pdf -pvc filnavn
% If you want a single-column, remove "reprint"
% Silence warning of revtex4-1
\usepackage{silence}
\WarningFilter{revtex4-1}{Repair the float}
% Allows special characters (including æøå)
\usepackage[utf8]{inputenc}
\usepackage{fontawesome}
\usepackage{multirow}
\usepackage[table]{xcolor}
% \rowcolors{2}{gray!15}{white}
% \usepackage{tabularx}
% \usepackage[english]{babel}
%% Note that you may need to download some of these packages manually, it depends on your setup.
%% I recommend downloading TeXMaker, because it includes a large library of the most common packages.
\usepackage{physics,amssymb} % mathematical symbols (physics imports amsmath)
\usepackage{graphicx} % include graphics such as plots
\graphicspath{.images/}
\usepackage{xcolor} % set colors
\usepackage{hyperref} % automagic cross-referencing
\usepackage{listings} % display code
% \usepackage{subfigure} % imports a lot of cool and useful figure commands
\usepackage{subcaption}
% \usepackage{float}
%\usepackage[section]{placeins}
\usepackage{algorithm}
\usepackage[noend]{algpseudocode}
\usepackage{tikz}
% \usetikzlibrary{quantikz}
% defines the color of hyperref objects
% Blending two colors: blue!80!black = 80% blue and 20% black
\hypersetup{ % this is just my personal choice, feel free to change things
colorlinks,
linkcolor={red!50!black},
citecolor={blue!50!black},
urlcolor={blue!80!black}}
% Biblio stuff
% \def\biblio{\bibliographystyle{plain}\bibliography{../references/references}}
\newcommand\numberthis{\addtocounter{equation}{1}\tag{\theequation}}
\usepackage{xr}
\usepackage{subfiles}
% \externaldocument[M-]{\subfix{main}}
\begin{document}
\title{The Ising model} % self-explanatory
\author{Cory Alexander Balaton \& Janita Ovidie Sandtrøen Willumsen \\ \faGithub \, \url{https://github.uio.no/FYS3150-G2-2023/Project-4}} % self-explanatory
\date{\today} % self-explanatory
\noaffiliation % ignore this, but keep it.
% Abstract
\subfile{sections/abstract}
\maketitle
% Introduction
\subfile{sections/introduction}
% Methods
\subfile{sections/methods}
% Results
\subfile{sections/results}
% Conclusion
\subfile{sections/conclusion}
\clearpage
\newpage
\onecolumngrid
\bibliographystyle{unsrtnat}
\bibliography{references}
% Appendix
\subfile{sections/appendices}
\end{document}
% Method
% Problem 1: OK
% Problem 2: OK
% Problem 3: OK - missing theory of phase transition
% Problem 4: validate numerical results using the analytical results
% Problem 7: division of workload mpi and openmp
% Problem 9: rewrite theoretical background of phase transition and critical temperature
% Results
% Problem 5: burn-in time
% Problem 6: estimate probability distribution based on histogram
% Problem 8: investigate phase transitions, and estimate critical temperature based on plot
% Problem 9: use critical temperature to estimate the ctritical temperature of infinite lattice
%
%