Vertex operator algebras are mathematically rigorous objects corresponding to chiral algebras in conformal field theory. Operads are mathematical devices to describe operations, that is, $n$-ary operations for all $n$ greater than or equal to $0$, not just binary products. In this paper, a reformulation of the notion of vertex operator algebra in terms of operads is presented. This reformulation shows that the rich geometric structure revealed in the study of conformal field theory and the rich algebraic structure of the theory of vertex operator algebras share a precise common foundation in basic operations associated with a certain kind of (two-dimensional) ``complex'' geometric object, in the sense in which classical algebraic structures...
We introduce several definitions within the framework of vertex and conformal algebras which are ana...
We consider unitary simple vertex operator algebras whose vertex operators satisfy certain energy bo...
AbstractI give a short proof of the following algebraic statement: in a simple vertex algebra, the u...
Vertex algebras are algebraic objects that encapsulate the concept of operator product expansion fro...
The theory of vertex algebras constitutes a mathematically rigorous axiomatic formulation of the alg...
The theory of vertex algebras constitutes a mathematically rigorous axiomatic formulation of the alg...
AbstractThe notion of vertex operator coalgebra is presented which corresponds to the family of corr...
AbstractI show that simple finite vertex algebras are commutative, and that the Lie conformal algebr...
This book, part of the series Contributions in Mathematical and Computational Sciences, reviews rece...
Vertex algebras in higher dimensions correspond to models of Quantum Field Theory (Wightman axioms) ...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
The first construction of the integrable highest-weight representations of affine Lie algebras or lo...
We introduce several definitions within the framework of vertex and conformal algebras which are ana...
We consider unitary simple vertex operator algebras whose vertex operators satisfy certain energy bo...
AbstractI give a short proof of the following algebraic statement: in a simple vertex algebra, the u...
Vertex algebras are algebraic objects that encapsulate the concept of operator product expansion fro...
The theory of vertex algebras constitutes a mathematically rigorous axiomatic formulation of the alg...
The theory of vertex algebras constitutes a mathematically rigorous axiomatic formulation of the alg...
AbstractThe notion of vertex operator coalgebra is presented which corresponds to the family of corr...
AbstractI show that simple finite vertex algebras are commutative, and that the Lie conformal algebr...
This book, part of the series Contributions in Mathematical and Computational Sciences, reviews rece...
Vertex algebras in higher dimensions correspond to models of Quantum Field Theory (Wightman axioms) ...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
In two-dimensional conformal field theory (CFT) the building blocks are given by chiral CFTs, i.e.~C...
The first construction of the integrable highest-weight representations of affine Lie algebras or lo...
We introduce several definitions within the framework of vertex and conformal algebras which are ana...
We consider unitary simple vertex operator algebras whose vertex operators satisfy certain energy bo...
AbstractI give a short proof of the following algebraic statement: in a simple vertex algebra, the u...