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A C*-algebraic approach to interacting quantum field theories

Mathematical Physics 2021-11-24 v3 High Energy Physics - Theory math.MP Operator Algebras Quantum Physics

Abstract

A novel C*-algebraic framework is presented for relativistic quantum field theories, fixed by a Lagrangean. It combines the postulates of local quantum physics, encoded in the Haag-Kastler axioms, with insights gained in the perturbative approach to quantum field theory. Key ingredients are an appropriate version of Bogolubov's relative SS-operators and a reformulation of the Schwinger-Dyson equations. These are used to define for any classical relativistic Lagrangean of a scalar field a non-trivial local net of C*-algebras, encoding the resulting interactions at the quantum level. The construction works in any number of space-time dimensions. It reduces the longstanding existence problem of interacting quantum field theories in physical spacetimeto the question of whether the C*-algebras so constructed admit suitable states, such as stable ground and equilibrium states. The method is illustrated on the example of a non-interacting field and it is shown how to pass from it within the algebra to interacting theories by relying on a rigorous local version of the interaction picture.

Keywords

Cite

@article{arxiv.1902.06062,
  title  = {A C*-algebraic approach to interacting quantum field theories},
  author = {Detlev Buchholz and Klaus Fredenhagen},
  journal= {arXiv preprint arXiv:1902.06062},
  year   = {2021}
}

Comments

28 pages, 4 figures, v3: sign error corrected

R2 v1 2026-06-23T07:42:33.370Z