Abstract:
It was previously noted that physical states in terms of the ADM formalism in the framework of four-dimensional (4D) Einstein gravity holographically reduce and can be described as three-dimensional (3D). Obviously, a problem with 4D covariance arises with such an approach; it turns out that there are two such problems with covariance. We consider methods for solving these problems. Although the unphysical character of the trace part of the fluctuation metric has long been known, it has not been considered from the standpoint of applying Feynman diagrams for computations. A proper method for treating the trace part with gauge-fixing is the key to resolving subtle covariance issues. Regarding the second problem, it turned out that a covariant renormalization can be performed to any loop order in the intermediate steps, which preserves the 4D covariance. Only at the final stage is it necessary to consider 3D physical external states. With physical external states, the one-particle-irreducible effective action becomes 3D, and renormalizability is ensured just as in the 3D case. We present the one-loop two-point renormalization with careful attention to the trace part of the fluctuation metric. In particular, we describe the one-loop renormalization of the Newton constant.
Keywords:
trace part of fluctuation metric, Feynman diagram, renormalization.
Citation:
I. Y. Park, “Four-dimensional covariance of Feynman diagrams in Einstein gravity”, TMF, 195:2 (2018), 288–312; Theoret. and Math. Phys., 195:2 (2018), 745–763
This publication is cited in the following 6 articles:
Nurmagambetov A.J., Park I.Y., “Quantum-Gravitational Trans-Planckian Radiation By a Rotating Black Hole”, Fortschritte Phys.-Prog. Phys., 69:10 (2021), 2100064, 2100064
I. Y. Park, “Revisiting the renormalization of Einstein-Maxwell theory at one-loop”, Prog. Theor. Exp. Phys., 2021:1 (2021), 013B03
I. Y. Park, “Quantization of gravity and finite temperature effects”, Particles, 4:4 (2021), 468–488
I. Park, “Foliation-based approach to quantum gravity and applications to astrophysics”, Universe, 5:3 (2019), 71
I. Y. Park, “Boundary dynamics in gravitational theories”, J. High Energy Phys., 2019, no. 7, 128
Nurmagambetov A.J., Park I.Y., “Uquantum-Induced Trans-Planckian Energy Near Horizon”, J. High Energy Phys., 2018, no. 5, 167