Cosmic fluctuations from quantum effective action
arXiv:1503.07860 · doi:10.1103/PhysRevD.92.083507
Abstract
Does the observable spectrum of cosmic fluctuations depend on detailed initial conditions? This addresses the question if the general inflationary paradigm is sufficient to predict within a given model the spectrum and amplitude of cosmic fluctuations, or if additional particular assumptions about the initial conditions are needed. The answer depends on the number of e-foldings between the beginning of inflation and horizon crossing of the observable fluctuations. We discuss an interacting inflaton field in an arbitrary homogeneous and isotropic geometry, employing the quantum effective action . An exact time evolution equation for the correlation function involves the second functional derivative . The operator formalism and quantum vacua for interacting fields are not needed. Use of the effective action also allows one to address the change of frames by field transformations (field relativity). Within the approximation of a derivative expansion for the effective action we find the most general solution for the correlation function, including mixed quantum states. For not too large the memory of the initial conditions is preserved. In this case the cosmic microwave background cannot disentangle between the initial spectrum and its processing at horizon crossing. The inflaton potential cannot be reconstructed without assumptions about the initial state of the universe. We argue that for very large a universal scaling form of the correlation function is reached for the range of observable modes. This can be due to symmetrization and equilibration effects, not yet contained in our approximation, which drive the short distance tail of the correlation function towards the Lorentz invariant propagator in flat space.
Extended discussion, assertional references, 39 pages, 6 figures
References in corpus (13)
- Exact evolution equation for the effective potential
- De Sitter Space and Eternity
- Quantum Contributions to Cosmological Correlations II: Can These Corrections Become Large?
- Effective Action of Vacuum: Semiclassical Approach
- Breakdown of Semiclassical Methods in de Sitter Space
- An effective field theory during inflation: reduced density matrix and its quantum master equation
- The curvature perturbation in a box
- Fermion Mass Generation in de Sitter Space
- Interacting Field Theories in de Sitter Space are Non-Unitary
- Vacuum Fluctuations of a Scalar Field during Inflation: Quantum versus Stochastic Analysis
- Eternal Universe
- Revisiting a pre-inflationary radiation era and its effect on the CMB power spectrum
- Feeling de Sitter
Cited by in corpus (15)
- Emergent scale symmetry: Connecting inflation and dark energy
- Graviton fluctuations erase the cosmological constant
- Gauge-invariant fields and flow equations for Yang-Mills theories
- The spatial Functional Renormalization Group and Hadamard states on cosmological spacetimes
- Functional Renormalization Group flows on Friedman-Lema\^ıtre-Robertson-Walker backgrounds
- Quantum correlations for the metric
- Primordial cosmic fluctuations for variable gravity
- Quantum Correlators in Friedmann Spacetimes -The omnipresent de Sitter and the invariant vacuum noise
- Quantum Effects of Mass on Scalar Field Correlations and Fluctuations during Inflation
- Cosmology from pregeometry
- Stress energy correlator in de Sitter space-time : its conformal masking or growth in connected Friedmann universes
- Primordial flat frame -- a new view on inflation
- Crossing the Big Bang singularity
- Hidden in the background: a local approach to CMB anomalies
- Non-equilibrium evolution of quantum fields during inflation and late accelerating expansion