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      Factorization Algebras in Quantum Field Theory

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      SKU 9781009006163 Categories ,
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      Ideal for researchers and graduate students at the interface between mathematics and physics, this two-volume set discusses factorization algebras. The first volume highlights examples exhibiting their use in field theory, while the second develops quantum field theory from th...

      £200.00

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      Description

      Product ID:9781009006163
      Product Form:Multiple-component retail product
      Country of Manufacture:GB
      Series:New Mathematical Monographs
      Title:Factorization Algebras in Quantum Field Theory
      Authors:Author: Kevin Costello, Owen Gwilliam
      Page Count:818
      Subjects:Algebra, Algebra, Functional analysis and transforms, Geometry, Topology, Quantum physics (quantum mechanics and quantum field theory), Functional analysis & transforms, Geometry, Topology, Quantum physics (quantum mechanics & quantum field theory)
      Description:Select Guide Rating
      Ideal for researchers and graduate students at the interface between mathematics and physics, this two-volume set discusses factorization algebras. The first volume highlights examples exhibiting their use in field theory, while the second develops quantum field theory from the ground up using a rich mix of modern mathematics.
      Factorization algebras are local-to-global objects that play a role in classical and quantum field theory that is similar to the role of sheaves in geometry: they conveniently organize complicated information. Their local structure encompasses examples like associative and vertex algebras; in these examples, their global structure encompasses Hochschild homology and conformal blocks. In the first volume of this set, the authors develop the theory of factorization algebras in depth, with a focus upon examples exhibiting their use in field theory, such as the recovery of a vertex algebra from a chiral conformal field theory and a quantum group from Abelian Chern–Simons theory. In the second volume, they show how factorization algebras arise from interacting field theories, both classical and quantum, and how they encode essential information such as operator product expansions, Noether currents, and anomalies.
      Imprint Name:Cambridge University Press
      Publisher Name:Cambridge University Press
      Country of Publication:GB
      Publishing Date:2024-02-29

      Additional information

      Weight1442 g
      Dimensions162 × 240 × 56 mm