Covariant transverse-traceless projection for secondary gravitational waves
arXiv:2111.09163 · doi:10.1103/PhysRevD.106.063521
Abstract
Second-order tensor modes induced by nonlinear gravity are a key component of the cosmological background of gravitational waves. A detection of this background would allow us to probe the primordial power spectrum at otherwise inaccessible scales. Usually, the energy density of these gravitational waves is studied within perturbation theory in a particular gauge -- a connection between our physical spacetime and a fictitious background. It is a widely recognized issue that the second-order, scalar-induced gravitational waves are gauge dependent. This issue arises because they are not well-defined as tensors in the physical spacetime at second-order and are thus unphysical. In this paper, we propose the covariant transverse-traceless projection of the extrinsic curvature to study cosmological gravitational waves on a spatial hypersurface. We define a new energy density which is based purely on spacetime tensors, independent of perturbation theory, and thus is gauge invariant by definition. We show that, in the context of second-order perturbation theory, this new energy density contains only propagating modes in the constant-time hypersurface in the Newtonian gauge. We further show that we can recover the same gravitational waves after a transformation to the synchronous gauge, so long as we correctly identify the Newtonian hypersurface.
14 pages, 2 figure, major revision
References in corpus (15)
- Exploring the Sensitivity of Next Generation Gravitational Wave Detectors
- Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations
- The cosmological gravitational wave background from primordial density perturbations
- Stochastic gravitational waves associated with the formation of primordial black holes
- Gravitational Waves Induced by Scalar Perturbations with a Lognormal Peak
- Induced gravitational waves as a probe of thermal history of the universe
- Non-Gaussianity and the induced gravitational wave background
- Gauge Independence of Induced Gravitational Waves
- Resonant multiple peaks in the induced gravitational waves
- Probing non-Gaussianities with the high frequency tail of induced gravitational waves
- Approximate gauge independence of the induced gravitational wave spectrum
- The Third Order Scalar Induced Gravitational Waves
- Gravitational Waves from Fully General Relativistic Oscillon Preheating
- On the energy of gravitational waves
- The parity-odd Intrinsic Bispectrum