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Quantum field theory in de Sitter space: renormalization by point-splitting
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1978 · Vol. 360(1700) · pp. 117–134
T. S. Bunch✉(King's College School)P. C. W. Davies(King's College School)
Abstract
Abstract We examine the modes of a scalar field in de Sitter space and construct quantum two-point functions. These are then used to compute a finite stress tensor by the technique of covariant point-splitting. We propose a renormalization ansatz based on the DeWitt-Schwinger expansion, and show that this removes all am biguities previously present in pointsplitting regularization. The results agree in detail with previous work by dimensional regularization, and give rise to an anomalous trace with the conventional coefficient. We describe how’ our treatment may be extended to more general situations.
Black Holes and Theoretical PhysicsCosmology and Gravitation TheoriesQuantum Electrodynamics and Casimir EffectRenormalizationAnsatzRegularization (linguistics)Mathematical physicsCovariant transformationPhysicsScalar field theoryQuantum field theoryScalar fieldDe Sitter space
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Quantum field theory in de Sitter space: renormalization by point-splitting
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