Cosmological scalar field perturbations can grow
arXiv:1501.06918 · doi:10.1103/PhysRevD.92.063508
Abstract
It has been argued that the small perturbations to the homogeneous and isotropic configurations of a canonical scalar field in an expanding universe do not grow. We show that this is not true in general, and clarify the root of the misunderstanding. We revisit a simple model in which the zero-mode of a free scalar field oscillates with high frequency around the minimum of the potential. Under this assumption the linear perturbations grow like those in the standard cold dark matter scenario, but with a Jeans length at the scale of the Compton wavelength of the scalar particle. Contrary to previous analyses in the literature our results do not rely on time-averages and/or fluid identifications, and instead we solve both analytically (in terms of a well-defined series expansion) and numerically the linearized Einstein-Klein-Gordon system. Also, we use gauge-invariant fields, which makes the physical analysis more transparent and simplifies the comparison with previous works carried out in different gauges. As a byproduct of this study we identify a time-dependent modulation of the different physical quantities associated to the background as well as the perturbations with potential observational consequences in dark matter models.
9 pages, 3 figures. Discussion improved, conclusions unchanged. Matches version in print. To appear in Phys. Rev. D
References in corpus (7)
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- Understanding the Core-Halo Relation of Quantum Wave Dark Matter, DM, from 3D Simulations
- A search for ultra-light axions using precision cosmological data
- Ultra-Light Scalar Fields and the Growth of Structure in the Universe
- Axion cold dark matter in view of BICEP2 results
- Cosmological nonlinear structure formation in full general relativity
- Modelling non-dust fluids in cosmology
Cited by in corpus (17)
- Towards accurate cosmological predictions for rapidly oscillating scalar fields as dark matter
- Cosmological perturbations in coherent oscillating scalar field models
- An extensive investigation of the Generalised Dark Matter model
- Jeans type instability of a complex self-interacting scalar field in general relativity
- Jeans mass-radius relation of self-gravitating Bose-Einstein condensates and typical parameters of the dark matter particle
- Collapse threshold for a cosmological Klein Gordon field
- An automatically generated code for relativistic inhomogeneous cosmologies
- The dark matter dispersion tensor in perturbation theory
- Asymmetric condensed dark matter
- On multifluid perturbations in scalar-tensor cosmology
- Complex Scalar Field Reheating and Primordial Black Hole production
- Cosmology using numerical relativity
- Non-linear cosmological collapse of quintessence
- On the formation of "supermassive" neutron stars and dynamical transition to spontaneous scalarization
- EBWeyl: a Code to Invariantly Characterize Numerical Spacetimes
- Cosmological effect of coherent oscillation of ultralight scalar fields in a multicomponent universe
- Oscillating scalar field as dark matter through the cosmological epochs