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\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*{little string theory} \hypertarget{context}{}\subsubsection*{{Context}}\label{context} \hypertarget{string_theory}{}\paragraph*{{String theory}}\label{string_theory} [[!include string theory - contents]] \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 \noindent\hyperlink{general}{General}\dotfill \pageref*{general} \linebreak \noindent\hyperlink{open_dbrane_theories}{Open D$p$-brane theories}\dotfill \pageref*{open_dbrane_theories} \linebreak \hypertarget{idea}{}\subsection*{{Idea}}\label{idea} A limit of the [[worldvolume]] theory of the [[NS5-brane]]. [[!include table of branes]] \hypertarget{related_concepts}{}\subsection*{{Related concepts}}\label{related_concepts} \begin{itemize}% \item [[6d (2,0)-supersymmetric QFT]] \end{itemize} \hypertarget{references}{}\subsection*{{References}}\label{references} \hypertarget{general}{}\subsubsection*{{General}}\label{general} The original reference is \begin{itemize}% \item [[Nathan Seiberg]], \emph{New theories in six dimensions and matrix description of M-theory on $T^5$ and $T^5/\mathbb{Z}_2$} Phys. Lett. B408 (1997) 98--104 (\href{http://xxx.lanl.gov/abs/arXiv:hep-th/9705221}{arXiv:arXiv:hep-th/9705221}) \end{itemize} Review is in \begin{itemize}% \item [[Ofer Aharony]], \emph{A brief review of ``little string theories''} , Class. Quant. Grav. 17 (2000) 929--938, (\href{http://arxiv.org/abs/hep-th/9911147}{arXiv:hep-th/9911147}). \item [[David Kutasov]], \emph{Introduction to Little String Theory}, Lectures 2001 (\href{http://users.ictp.it/~pub_off/lectures/lns007/Kutasov/Kutasov.pdf}{pdf}) \end{itemize} Little string theories on [[heterotic string theory]] [[NS5-branes]] with $N = (1,0)$ [[supersymmetry]] are discussed in \begin{itemize}% \item E. Gava, K.S. Narain, M.H. Sarmadi, \emph{Little String Theories in Heterotic Backgrounds}, Nucl.Phys. B626 (2002) 3-25 (\href{http://arxiv.org/abs/hep-th/0112200}{arXiv:hep-th/0112200}) \end{itemize} The [[T-duality]] between type IIA and type IIB little strings is discussed in \begin{itemize}% \item Jungmin Kim, Seok Kim, Kimyeong Lee, \emph{Little strings and T-duality}, JHEP 2016:170 (\href{https://arxiv.org/abs/1503.07277}{arXiv:1503.07277}) \end{itemize} Construction within [[F-theory]] is discussed in \begin{itemize}% \item Lakshya Bhardwaj, Michele Del Zotto, [[Jonathan Heckman]], [[David Morrison]], [[Tom Rudelius]], [[Cumrun Vafa]], \emph{F-theory and the Classification of Little Strings} (\href{http://arxiv.org/abs/1511.05565}{arXiv:1511.05565}) \end{itemize} See also \begin{itemize}% \item [[Mina Aganagic]], \emph{Some mathematical applications of little string theory}, talk at \href{http://ymsc.tsinghua.edu.cn:8090/strings/}{Strings 2016} (\href{http://ymsc.tsinghua.edu.cn:8090/strings/slides/8.1/Aganagic%20v2.pdf}{pdf}) \item Joonho Kim, Kimyeong Lee, \emph{Little strings on $D_n$ orbifolds} (\href{https://arxiv.org/abs/1702.03116}{arXiv:1702.03116}) \end{itemize} Relation of little string theory to the [[quantum geometric Langlands correspondence]] is discussed in \begin{itemize}% \item [[Mina Aganagic]], [[Edward Frenkel]], [[Andrei Okounkov]], \emph{Quantum $q$-Langlands Correspondence} (\href{https://arxiv.org/abs/1701.03146}{arXiv:1701.03146}) \end{itemize} also \begin{itemize}% \item Babak Haghighat, Rui Sun, \emph{M5 branes and Theta Functions} (\href{https://arxiv.org/abs/1811.04938}{arXiv:1811.04938}) \end{itemize} \hypertarget{open_dbrane_theories}{}\subsubsection*{{Open D$p$-brane theories}}\label{open_dbrane_theories} For light [[D-branes]] ending on NS5-branes (see \href{NS5-brane#DBranesEndingOnNS5Branes}{there}) \begin{itemize}% \item [[Rajesh Gopakumar]], [[Shiraz Minwalla]], [[Nathan Seiberg]], [[Andrew Strominger]], \emph{OM Theory in Diverse Dimensions}, JHEP 0008:008, 2000 (\href{https://arxiv.org/abs/hep-th/0006062}{arXiv:hep-th/0006062}) \item Troels Harmark, \emph{Open Branes in Space-Time Non-Commutative Little String Theory}, Nucl.Phys. B593 (2001) 76-98 (\href{https://arxiv.org/abs/hep-th/0007147}{arXiv:hep-th/0007147}) \item J. X. Lu, \emph{$(1 + p)$-Dimensional Open $D(p - 2)$ Brane Theories}, JHEP 0108:049, 2001 (\href{https://arxiv.org/abs/hep-th/0102056}{arXiv:hep-th/0102056}) \end{itemize} See also \begin{itemize}% \item Dan Israel, Ari Pakman, Jan Troost, \emph{D-branes in Little String Theory}, Nucl.Phys. B722 (2005) 3-64 (\href{https://arxiv.org/abs/hep-th/0502073}{arXiv:hep-th/0502073}) \end{itemize} [[!redirects little string theories]] \end{document}