Scalar Contribution to the Graviton Self-Energy during Inflation
arXiv:1101.5804 · doi:10.1103/PhysRevD.83.084049
Abstract
We use dimensional regularization to evaluate the one loop contribution to the graviton self-energy from a massless, minimally coupled scalar on a locally de Sitter background. For noncoincident points our result agrees with the stress tensor correlators obtained recently by Perez-Nadal, Roura and Verdaguer. We absorb the ultraviolet divergences using the and counterterms first derived by 't Hooft and Veltman, and we take the limit of the finite remainder. The renormalized result is expressed as the sum of two transverse, 4th order differential operators acting on nonlocal, de Sitter invariant structure functions. In this form it can be used to quantum-correct the linearized Einstein equations so that one can study how the inflationary production of infrared scalars affects the propagation of dynamical gravitons and the force of gravity.
54pages
References in corpus (12)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Leading Log Solution for Inflationary Yukawa
- Quantum Stability of a w < - 1 Phase of Cosmic Acceleration
- Infrared Propagator Corrections for Constant Deceleration
- Fermion Mass Generation in de Sitter Space
- Quantum Gravity Corrections to the One Loop Scalar Self-Mass during Inflation
- Scalar Field Equations from Quantum Gravity during Inflation
- One Loop Corrected Mode Functions for SQED during Inflation
- Spin Effects in Long Range Gravitational Scattering
- Solving the Effective Field Equations for the Newtonian Potential
- Semiclassical Gravity in the Far Field Limit of Stars, Black Holes, and Wormholes
- A Causal Alternative to Feynman's Propagator
Cited by in corpus (7)
- Non-local quantum effects in cosmology 1: Quantum memory, non-local FLRW equations and singularity avoidance
- Perturbative Quantum Gravity Comes of Age
- One-loop gravitational wave spectrum in de Sitter spacetime
- Excitation of Photons by Inflationary Gravitons
- Covariant Vacuum Polarizations on de Sitter Background
- Quantum gravity corrections to the conformally coupled scalar self-mass-squared on de Sitter background
- Symmetry breaking in de Sitter: a stochastic effective theory approach