\documentclass[12pt,titlepage]{article} \usepackage{amsmath} \usepackage{mathrsfs} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsthm} \usepackage{mathtools} \usepackage{graphicx} \usepackage{color} \usepackage{ucs} \usepackage[utf8x]{inputenc} \usepackage{xparse} \usepackage{hyperref} %----Macros---------- % % Unresolved issues: % % \righttoleftarrow % \lefttorightarrow % % \color{} with HTML colorspec % \bgcolor % \array with options (without options, it's equivalent to the matrix environment) % Of the standard HTML named colors, white, black, red, green, blue and yellow % are predefined in the color package. 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\newcommand{\coproduct}{\coprod} \newcommand{\product}{\prod} \newcommand{\closure}{\overline} \newcommand{\integral}{\int} \newcommand{\doubleintegral}{\iint} \newcommand{\tripleintegral}{\iiint} \newcommand{\quadrupleintegral}{\iiiint} \newcommand{\conint}{\oint} \newcommand{\contourintegral}{\oint} \newcommand{\infinity}{\infty} \newcommand{\bottom}{\bot} \newcommand{\minusb}{\boxminus} \newcommand{\plusb}{\boxplus} \newcommand{\timesb}{\boxtimes} \newcommand{\intersection}{\cap} \newcommand{\union}{\cup} \newcommand{\Del}{\nabla} \newcommand{\odash}{\circleddash} \newcommand{\negspace}{\!} \newcommand{\widebar}{\overline} \newcommand{\textsize}{\normalsize} \renewcommand{\scriptsize}{\scriptstyle} \newcommand{\scriptscriptsize}{\scriptscriptstyle} \newcommand{\mathfr}{\mathfrak} \newcommand{\statusline}[2]{#2} \newcommand{\tooltip}[2]{#2} \newcommand{\toggle}[2]{#2} % Theorem Environments \theoremstyle{plain} \newtheorem{theorem}{Theorem} \newtheorem{lemma}{Lemma} \newtheorem{prop}{Proposition} \newtheorem{cor}{Corollary} \newtheorem*{utheorem}{Theorem} \newtheorem*{ulemma}{Lemma} \newtheorem*{uprop}{Proposition} \newtheorem*{ucor}{Corollary} \theoremstyle{definition} \newtheorem{defn}{Definition} \newtheorem{example}{Example} \newtheorem*{udefn}{Definition} \newtheorem*{uexample}{Example} \theoremstyle{remark} \newtheorem{remark}{Remark} \newtheorem{note}{Note} \newtheorem*{uremark}{Remark} \newtheorem*{unote}{Note} %------------------------------------------------------------------- \begin{document} %------------------------------------------------------------------- \section*{derived analytic geometry} \hypertarget{contents}{}\section*{{Contents}}\label{contents} \noindent\hyperlink{idea}{Idea}\dotfill \pageref*{idea} \linebreak \noindent\hyperlink{related_concepts}{Related concepts}\dotfill \pageref*{related_concepts} \linebreak \noindent\hyperlink{references}{References}\dotfill \pageref*{references} \linebreak \hypertarget{idea}{}\subsection*{{Idea}}\label{idea} Derived analytic geometry is the study of derived analogs of analytic spaces in various context, such as [[complex analytic geometry]], [[non-archimedean analytic geometry]] and [[global analytic geometry]]. The main motivation for the introduction of derived analytic spaces is to have a proper functorial setting for deformation theory and the cotangent complex in analytic geometry, to prove an Artin/Lurie representability theorem, that characterizes Artin stacks among higher derived stacks. One also gets, using these methods, a derived construction of the Chern character and an analytic version of derived de Rham cohomology. Derived analytic methods may also be useful to study intersection theory and virtual fundamental classes on some analytic moduli spaces. \hypertarget{related_concepts}{}\subsection*{{Related concepts}}\label{related_concepts} \begin{itemize}% \item [[derived complex analytic space]] \item [[derived global analytic geometry]] \item [[overconvergent global analytic geometry]] \end{itemize} \hypertarget{references}{}\subsection*{{References}}\label{references} \begin{itemize}% \item [[Jacob Lurie]], \emph{[[Closed Immersions]]} (DAG IX). \item [[Mauro Porta]], [[Tony Yue Yu]], \emph{Higher analytic stacks and GAGA theorems}, \href{http://arxiv.org/abs/1412.5166}{arXiv:1412.5166}. \item [[Mauro Porta]], [[Tony Yue Yu]], \emph{Derived non-archimedean analytic spaces}, \href{http://arxiv.org/abs/1601.00859}{arXiv:1601.00859}. \item [[Mauro Porta]], \emph{Derived complex analytic geometry I: GAGA theorems}, \href{http://arxiv.org/abs/1506.09042}{arXiv:1506.09042}. \item [[Mauro Porta]], \emph{Derived complex analytic geometry II: square-zero extensions}, \href{http://arxiv.org/abs/1507.06602}{arXiv:1507.06602}. \item [[Frédéric Paugam]], \emph{Overconvergent global analytic geometry}, \href{http://arxiv.org/abs/1410.7971}{arXiv:1410.7971}. \end{itemize} \end{document}