Mechanism for the suppression of quantum noise at large scales on expanding space
arXiv:1306.1579 · doi:10.1103/PhysRevD.88.103515
Abstract
We present an exactly-solvable model for the suppression of quantum noise at large scales on expanding space. The suppression arises naturally in the de Broglie-Bohm pilot-wave formulation of quantum theory, according to which the Born probability rule has a dynamical origin. For a scalar field on a radiation-dominated background we construct the exact solution for the time-evolving wave functional and study properties of the associated field trajectories. It is shown that the time evolution of a field mode on expanding space is mathematically equivalent to that of a standard harmonic oscillator with a 'retarded time' that depends on the wavelength of the mode. In the far super-Hubble regime the equivalent oscillator evolves over only one Hubble time, yielding a simple mechanism whereby relaxation to the Born rule can be suppressed on very large scales. We present numerical simulations illustrating how the expansion of space can cause a retardation of relaxation in the super-Hubble regime. Given these results it is natural to expect a suppression of quantum noise at super-Hubble wavelengths. Such suppression could have taken place in a pre-inflationary era, resulting in a large-scale power deficit in the cosmic microwave background.
39 pages, 5 figures. Minor amendments in v2, to appear in Phys. Rev. D
References in corpus (10)
- Reheating in Inflationary Cosmology: Theory and Applications
- Planck 2018 results. VII. Isotropy and Statistics of the CMB
- Detection of primordial non-Gaussianity (fNL) in the WMAP 3-year data at above 99.5% confidence
- The pre-inflationary vacuum in the cosmic microwave background
- Reheating temperature from the CMB
- Effects of a pre-inflation radiation-dominated epoch to CMB anisotropy
- Astrophysical and Cosmological Tests of Quantum Theory
- De Broglie-Bohm Guidance Equations for Arbitrary Hamiltonians
- Black Holes, Information Loss, and Hidden Variables
- De Broglie-Bohm Prediction of Quantum Violations for Cosmological Super-Hubble Modes
Cited by in corpus (21)
- Benefits of Objective Collapse Models for Cosmology and Quantum Gravity
- Long-time relaxation in pilot-wave theory
- Primordial quantum nonequilibrium and large-scale cosmic anomalies
- Instability of quantum equilibrium in Bohm's dynamics
- Quantum field theory of relic nonequilibrium systems
- Robust predictions for the large-scale cosmological power deficit from primordial quantum nonequilibrium
- Modeling the large-scale power deficit with smooth and discontinuous primordial spectra
- De Broglie-Bohm Quantum Mechanics
- Beyond the Born rule in quantum gravity
- Anomalous spectral lines and relic quantum nonequilibrium
- Extreme quantum nonequilibrium, nodes, vorticity, drift, and relaxation retarding states
- Statistical anisotropy and cosmological quantum relaxation
- Perturbations and quantum relaxation
- Mechanism for nonlocal information flow from black holes
- Trans-Planckian fluctuations and the stability of quantum mechanics
- Evolution of Quantum Nonequilibrium for Coupled Harmonic Oscillators
- Does the PBR Theorem Rule Out a Statistical Understanding of Quantum Mechanics?
- Quantum relaxation in a system of harmonic oscillators with time-dependent coupling
- Quantum gravity and quantum probability
- Signatures of relic quantum nonequilibrium
- Towards a test of the Born rule in high-energy collisions