Axiomatic quantum field theory in curved spacetime
arXiv:0803.2003 · doi:10.1007/s00220-009-0880-7
Abstract
The usual formulations of quantum field theory in Minkowski spacetime make crucial use of features--such as Poincare invariance and the existence of a preferred vacuum state--that are very special to Minkowski spacetime. In order to generalize the formulation of quantum field theory to arbitrary globally hyperbolic curved spacetimes, it is essential that the theory be formulated in an entirely local and covariant manner, without assuming the presence of a preferred state. We propose a new framework for quantum field theory, in which the existence of an Operator Product Expansion (OPE) is elevated to a fundamental status, and, in essence, all of the properties of the quantum field theory are determined by its OPE. We provide general axioms for the OPE coefficients of a quantum field theory. These include a local and covariance assumption (implying that the quantum field theory is locally and covariantly constructed from the spacetime metric), a microlocal spectrum condition, an "associativity" condition, and the requirement that the coefficient of the identity in the OPE of the product of a field with its adjoint have positive scaling degree. We prove curved spacetime versions of the spin-statistics theorem and the PCT theorem. Some potentially significant further implications of our new viewpoint on quantum field theory are discussed.
Latex, 44 pages, 2 figures
References in corpus (2)
Cited by in corpus (50)
- Quantum fields in curved spacetime
- Infrared effects in inflationary correlation functions
- Quantum Instability of the Cauchy Horizon in Reissner-Nordström-deSitter Spacetime
- A General Proof of the Quantum Null Energy Condition
- Backreaction: directions of progress
- Quantum Field Theory on Curved Backgrounds -- A Primer
- Strong field QED in lepton colliders and electron/laser interactions
- Classical and Quantum Fields on Lorentzian Manifolds
- On the construction of Hartle-Hawking-Israel states across a static bifurcate Killing horizon
- Cosmological particle creation in states of low energy
- Propagators in de Sitter space
- The operator product expansion converges in perturbative field theory
- Action principle for OPE
- Emergent Gravity as the Eraser of Anomalous Gauge Boson Masses, and QFT-GR Concord
- Instability of twisted magnetar magnetospheres
- Geometrizing the Klein-Gordon and Dirac equations in Doubly Special Relativity
- Trace Anomaly of Weyl Fermions via the Path Integral
- Inflation without quantum gravity
- Black holes as bosonic Gaussian channels
- Modular nuclearity: A generally covariant perspective
- Phenomenological Effects of CPT and Lorentz Invariance Violation in Particle and Astroparticle Physics
- Recursive construction of operator product expansion coefficients
- Coherent states, quantum gravity and the Born-Oppenheimer approximation, I: General considerations
- Spinfoam Fermions: PCT Symmetry, Dirac Determinant, and Correlation Functions
- Local Thermal Equilibrium in Quantum Field Theory on Flat and Curved Spacetimes
- Operator product expansion algebra
- Explicit harmonic and spectral analysis in Bianchi I-VII type cosmologies
- Quantum gravity phenomenology at the dawn of the multi-messenger era -- A review
- Quantum astrometric observables II: time delay in linearized quantum gravity
- Fluctuations of Quantum Fields in a Classical Background and Reheating
- Snowmass White Paper: The Quest to Define QFT
- Global properties of physically interesting Lorentzian spacetimes
- Space-time qubits
- Hidden symmetries for transparent de Sitter space
- Fully renormalized stress tensor correlator in flat space
- Regularizing (away) vacuum energy
- Associativity of the operator product expansion
- Matter in Loop Quantum Gravity
- The end of spacetime
- Green Operators in Low Regularity Spacetimes and Quantum Field Theory
- In-in formalism, pseudo-instantons and rethinking quantum cosmology
- Classical Limits of Unbounded Quantities by Strict Quantization
- Towards a Probabilistic Foundation of Relativistic Quantum Theory: The One-Body Born Rule in Curved Spacetime
- Towards a unitary formulation of quantum field theory in curved spacetime: the case of de Sitter spacetime
- A note on quantization in the presence of gravitational shock waves
- The Operator Product Expansion in Quantum Field Theory
- On higher spin symmetries in de Sitter QFTs
- Low degree Lorentz invariant polynomials as potential entanglement invariants for multiple Dirac spinors
- Quantum fields in boson star spacetime
- Stress tensor bounds on quantum fields