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On the duality condition for quantum fields

Journal of Mathematical Physics · 1976 · Vol. 17(3) · pp. 303–321
J.J. BisognanoEyvind H. Wichmann

Abstract

A general quantum field theory is considered in which the fields are assumed to be operator-valued tempered distributions. The system of fields may include any number of boson fields and fermion fields. A theorem which relates certain complex Lorentz transformations to the TCP transformation is stated and proved. With reference to this theorem, duality conditions are considered, and it is shown that such conditions hold under various physically reasonable assumptions about the fields. Extensions of the algebras of field operators are discussed with reference to the duality conditions. Local internal symmetries are discussed, and it is shown that these commute with the Poincaré group and with the TCP transformation.

Quantum Mechanics and ApplicationsCold Atom Physics and Bose-Einstein CondensatesAdvanced Topics in AlgebraDuality (order theory)Lorentz transformationMathematicsQuantum field theoryPure mathematicsTransformation (genetics)Operator (biology)Field (mathematics)Homogeneous spaceBoson
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References
On the duality condition for a Hermitian scalar field
Journal of Mathematical Physics · 1975 · 596 citations
On Rings of Operators
Annals of Mathematics · 1936 · 1,272 citations
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