Adiabaticity and gravity theory independent conservation laws for cosmological perturbations
arXiv:1512.05757 · doi:10.1016/j.physletb.2016.02.054
Abstract
We carefully study the implications of adiabaticity for the behavior of cosmological perturbations. There are essentially three similar but different definitions of non-adiabaticity: one is appropriate for a thermodynamic fluid , another is for a general matter field , and the last one is valid only on superhorizon scales. The first two definitions coincide if where is the propagation speed of the perturbation, while . Assuming the adiabaticity in the general sense, , we derive a relation between the lapse function in the comoving sli\-cing and valid for arbitrary matter field in any theory of gravity, by using only momentum conservation. The relation implies that as long as , the uniform density, comoving and the proper-time slicings coincide approximately for any gravity theory and for any matter field if approximately. In the case of general relativity this gives the equivalence between the comoving curvature perturbation and the uniform density curvature perturbation on superhorizon scales, and their conservation. We then consider an example in which , where exactly, but the equivalence between and no longer holds. Namely we consider the so-called ultra slow-roll inflation. In this case both and are not conserved. In particular, as for , we find that it is crucial to take into account the next-to-leading order term in 's spatial gradient expansion to show its non-conservation, even on superhorizon scales. This is an example of the fact that adiabaticity (in the thermodynamic sense) is not always enough to ensure the conservation of or .
6 pages, accepted in Physics Letters B
References in corpus (3)
Cited by in corpus (18)
- Primordial Black Holes from Multifield Inflation with Nonminimal Couplings
- The separate-universe approach and sudden transitions during inflation
- Vanishing of local non-Gaussianity in canonical single field inflation
- Global adiabaticity and non-Gaussianity consistency condition
- Effective theories for a nonrelativistic field in an expanding universe: Induced self-interaction, pressure, sound speed, and viscosity
- Stochastic inflation beyond slow roll: noise modelling and importance sampling
- In search of an observational quantum signature of the primordial perturbations in slow-roll and ultra slow-roll inflation
- An update on adiabatic modes in cosmology and N formalism
- Unifying attractor and non-attractor models of inflation under a single soft theorem
- Dynamical systems in perturbative scalar field cosmology
- General background conditions for K-bounce and adiabaticity
- Second order cosmological perturbations: new conserved quantities and the general solution at super-horizon scale
- Effects of the modification of gravity on the production of primordial black holes
- The effects of anisotropy and non-adiabaticity on the evolution of comoving curvature perturbation
- On the Hamilton-Jacobi approach to inflation beyond slow roll
- Effective speed of cosmological perturbations
- Curvature Perturbations in the Effective Field Theory of Inflation
- Planck scale operators, inflation and fine tuning