Massless Scalar Field Vacuum in de Sitter Spacetime
arXiv:1204.4462 · doi:10.1088/1475-7516/2012/11/051
Abstract
As a spacetime with compact spatial sections, de Sitter spacetime does not have a de Sitter-invariant ground state for a minimally-coupled massless scalar field that gives definite expectation values for any observables not invariant under constant shifts of the field. However, if one restricts to observables that are shift invariant, as the action is, then there is a unique vacuum state. Here we calculate the shift-invariant four-point function that is the vacuum expectation value of the product of the difference of the field values at one pair of points and of the difference of the field values at a second pair of points. We show that this vacuum expectation value obeys a cluster-decomposition property of vanishing in the limit that the one pair of points is moved arbitrarily far from the other pair. We also calculate the shift-invariant correlation of the gradient of the scalar field at two different points and show that it also obeys a cluster-decomposition property. Possible relevance to a putative de Sitter-invariant quantum state for gravity is discussed.
24 pages, LaTeX, revised to include clarification, Euclidean construction, and imaginary terms, and now further discussion of relations to previous work, and more references (now 40)
References in corpus (6)
- The IR stability of de Sitter: Loop corrections to scalar propagators
- One-loop gravitational wave spectrum in de Sitter spacetime
- de Sitter invariance of the dS graviton vacuum
- Physical equivalence between the covariant and physical graviton two-point functions in de Sitter spacetime
- Weyl-Weyl Correlator in de Donder Gauge on de Sitter
- Linearized Weyl-Weyl Correlator in a de Sitter Breaking Gauge
Cited by in corpus (10)
- Vacuum entanglement harvesting with a zero mode
- Quantum Correlators in Friedmann Spacetimes -The omnipresent de Sitter and the invariant vacuum noise
- Studies on the SJ Vacuum in de Sitter Spacetime
- Zero mode suppression of superluminal signals in light-matter interactions
- Stress energy correlator in de Sitter space-time : its conformal masking or growth in connected Friedmann universes
- Unruh deWitt probe of late time revival of quantum correlations in Friedmann spacetimes
- The time traveler's guide to the quantization of zero modes
- Particle detectors under chronological hazard
- Unequal time Commutators in Friedmann universes: Deterministic evolution of massless fields
- Aspects of Quantum Fields on Causal Sets