Robust predictions for the large-scale cosmological power deficit from primordial quantum nonequilibrium
arXiv:1510.03508 · doi:10.1142/S0218271816500681
Abstract
The de Broglie-Bohm pilot-wave formulation of quantum theory allows the existence of physical states that violate the Born probability rule. Recent work has shown that in pilot-wave field theory on expanding space relaxation to the Born rule is suppressed for long-wavelength field modes, resulting in a large-scale power deficit ξ(k) which for a radiation-dominated expansion is found to have an approximate inverse-tangent dependence on k (assuming that the width of the initial distribution is smaller than the width of the initial Born-rule distribution and that the initial quantum states are evenly-weighted superpositions of energy states). In this paper we show that the functional form of ξ(k) is robust under changes in the initial nonequilibrium distribution -- subject to the limitation of a subquantum width -- as well as under the addition of an inflationary era at the end of the radiation-dominated phase. In both cases the predicted deficit ξ(k) remains an inverse-tangent function of k. Furthermore, with the inflationary phase the dependence of the fitting parameters on the number of superposed pre-inflationary energy states is comparable to that found previously. Our results indicate that, for the assumed broad class of initial conditions, an inverse-tangent power deficit is likely to be a fairly general and robust signature of quantum relaxation in the early universe.
22 pages, 9 figures, equation (16) corrected in v3
References in corpus (5)
- The pre-inflationary vacuum in the cosmic microwave background
- 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
- Statistical anisotropy and cosmological quantum relaxation
Cited by in corpus (15)
- Obstructions to Bell CMB Experiments
- The Construction Interpretation: Conceptual Roads to Quantum Gravity
- Modeling the large-scale power deficit with smooth and discontinuous primordial spectra
- De Broglie-Bohm Quantum Mechanics
- In search of an observational quantum signature of the primordial perturbations in slow-roll and ultra slow-roll inflation
- Beyond the Born rule in quantum gravity
- Extreme quantum nonequilibrium, nodes, vorticity, drift, and relaxation retarding states
- A note on the semiclassicality of cosmological perturbations
- Perturbations and quantum relaxation
- Mechanism for nonlocal information flow from black holes
- Evolution of Quantum Nonequilibrium for Coupled Harmonic Oscillators
- Quantum relaxation in a system of harmonic oscillators with time-dependent coupling
- Quantum gravity and quantum probability
- Signatures of relic quantum nonequilibrium
- A principle of information conservation for physical laws (Hidden information in quantum systems?)