We propose to include gravity in quantum field theory nonperturbatively, by modifying the propagators so that each virtual particle in a Feynman graph move in the space–time determined by the four-momenta of the other particles in the same graph. By making additional working assumptions, we are able to put this idea at work in a simplified context, and obtain a modified Feynman propagator for the massless neutral scalar field. Our expression shows a suppression at high momentum, strong enough to entail finite results, to all loop orders, for processes involving at least two virtual particles.

R. Casadio (2012). GRAVITATIONAL RENORMALIZATION OF QUANTUM FIELD THEORY. INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 27, 1250186-1-1250186-18 [10.1142/S0217751X12501862].

GRAVITATIONAL RENORMALIZATION OF QUANTUM FIELD THEORY

CASADIO, ROBERTO
2012

Abstract

We propose to include gravity in quantum field theory nonperturbatively, by modifying the propagators so that each virtual particle in a Feynman graph move in the space–time determined by the four-momenta of the other particles in the same graph. By making additional working assumptions, we are able to put this idea at work in a simplified context, and obtain a modified Feynman propagator for the massless neutral scalar field. Our expression shows a suppression at high momentum, strong enough to entail finite results, to all loop orders, for processes involving at least two virtual particles.
2012
R. Casadio (2012). GRAVITATIONAL RENORMALIZATION OF QUANTUM FIELD THEORY. INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 27, 1250186-1-1250186-18 [10.1142/S0217751X12501862].
R. Casadio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/133094
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