The Effect of Gravitational Tidal Forces on Renormalized Quantum Fields
arXiv:1111.3174 · doi:10.1007/JHEP02(2012)120
Abstract
The effect of gravitational tidal forces on renormalized quantum fields propagating in curved spacetime is investigated and a generalisation of the optical theorem to curved spacetime is proved. In the case of QED, the interaction of tidal forces with the vacuum polarization cloud of virtual e^+ e^- pairs dressing the renormalized photon has been shown to produce several novel phenomena. In particular, the photon field amplitude can locally increase as well as decrease, corresponding to a negative imaginary part of the refractive index, in apparent violation of unitarity and the optical theorem. Below threshold decays into e^+ e^- pairs may also occur. In this paper, these issues are studied from the point of view of a non-equilibrium initial-value problem, with the field evolution from an initial null surface being calculated for physically distinct initial conditions and for both scalar field theories and QED. It is shown how a generalised version of the optical theorem, valid in curved spacetime, allows a local increase in amplitude while maintaining consistency with unitarity. The picture emerges of the field being dressed and undressed as it propagates through curved spacetime, with the local gravitational tidal forces determining the degree of dressing and hence the amplitude of the renormalized quantum field. These effects are illustrated with many examples, including a description of the undressing of a photon in the vicinity of a black hole singularity.
76 pages, jheppub.sty, 10 figures, small corrections. arXiv admin note: text overlap with arXiv:1006.0145
References in corpus (6)
- Superluminality and UV Completion
- The Refractive Index of Curved Spacetime: the Fate of Causality in QED
- Causality and Micro-Causality in Curved Spacetime
- Fermi Coordinates and Penrose Limits
- Real time response on dS_3: the Topological AdS Black Hole and the Bubble
- The Effect of Gravitational Tidal Forces on Vacuum Polarization: How to Undress a Photon
Cited by in corpus (16)
- The Speed of Gravity
- Stability of Horndeski vector-tensor interactions
- Black Hole Gravitational Waves in the Effective Field Theory of Gravity
- Causality in Curved Spacetimes: The Speed of Light & Gravity
- Generalized Galileon Duality
- Asymptotic states and renormalization in Lorentz-violating quantum field theory
- Superluminality, Black Holes and Effective Field Theory
- Causality Violation, Gravitational Shockwaves and UV Completion
- Memory, Penrose Limits and the Geometry of Gravitational Shockwaves and Gyratons
- The Quantum Field Theory of K-mouflage
- Constraints on the velocity of gravitational waves from NANOGrav 15-year data set
- Gravitational leptogenesis, C, CP and strong equivalence
- Causality, Renormalizability and Ultra-High Energy Gravitational Scattering
- Dynamical Evolution of Gravitational Leptogenesis
- A New Twist on the Geometry of Gravitational Plane Waves
- Graviton propagation within the context of the D-material universe