Axial gravitational waves in FLRW cosmology and memory effects
Abstract
We show initial data for gravitational axial waves, that are twice differentiable but which are not . They generate wave pulses that interact with matter in the radiation cosmological era. This forces the radiation matter to rotate. This rotation is permanent - it persists after the passage of the gravitational pulse. The observed inhomogeneities of the cosmic microwave background radiation put a bound onto discontinuities of superhorizon metric perturbations. We explicitly show that a class of smooth initial metrics that are at least gives rise to gravitational wave pulses that do not interact with the background during the radiation epoch.
Keywords
Cite
@article{arxiv.1706.09620,
title = {Axial gravitational waves in FLRW cosmology and memory effects},
author = {Wojciech Kulczycki and Edward Malec},
journal= {arXiv preprint arXiv:1706.09620},
year = {2017}
}
Comments
This version matches the published article (Phys. Rev. D 96, 063523 (2017)). A note is added on interaction of axial gravitational waves with stars' interiors, with 3 new references