
arXiv: 1302.2604
We describe a coordinate-free perspective on conformal nets, as functors from intervals to von Neumann algebras. We discuss an operation of fusion of intervals and observe that a conformal net takes a fused interval to the fiber product of von Neumann algebras. Though coordinate-free nets do not a priori have vacuum sectors, we show that there is a vacuum sector canonically associated to any circle equipped with a conformal structure. This is the first in a series of papers constructing a 3-category of conformal nets, defects, sectors, and intertwiners.
Updated to published version
Pencils, nets, webs in algebraic geometry, General theory of von Neumann algebras, Mathematics - Operator Algebras, FOS: Physical sciences, Mathematical Physics (math-ph), Two-dimensional field theories, conformal field theories, etc. in quantum mechanics, General theory of \(C^*\)-algebras, Applications of selfadjoint operator algebras to physics, FOS: Mathematics, Loop groups and related constructions, group-theoretic treatment, 81T05, 46L37, 46M05 (Primary), 81T40, 46L60, 81R10 (Secondary), Operator Algebras (math.OA), Mathematical Physics, conformal net
Pencils, nets, webs in algebraic geometry, General theory of von Neumann algebras, Mathematics - Operator Algebras, FOS: Physical sciences, Mathematical Physics (math-ph), Two-dimensional field theories, conformal field theories, etc. in quantum mechanics, General theory of \(C^*\)-algebras, Applications of selfadjoint operator algebras to physics, FOS: Mathematics, Loop groups and related constructions, group-theoretic treatment, 81T05, 46L37, 46M05 (Primary), 81T40, 46L60, 81R10 (Secondary), Operator Algebras (math.OA), Mathematical Physics, conformal net
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