Interferences in the Stochastic Gravitational Wave Background
arXiv:2104.14231 · doi:10.1088/1475-7516/2021/08/005
Abstract
Although the expansion of the Universe explicitly breaks the time-translation symmetry, cosmological predictions for the stochastic gravitational wave background (SGWB) are usually derived under the so-called stationary hypothesis. By dropping this assumption and keeping track of the time dependence of gravitational waves at all length scales, we derive the expected unequal-time (and equal-time) waveform of the SGWB generated by scaling sources, such as cosmic defects. For extinct and smooth enough sources, we show that all observable quantities are uniquely and analytically determined by the holomorphic Fourier transform of the anisotropic stress correlator. Both the strain power spectrum and the energy density parameter are shown to have an oscillatory fine structure, they significantly differ on large scales while running in phase opposition at large wavenumbers . We then discuss scaling sources that are never extinct nor smooth and which generate a singular Fourier transform of the anisotropic stress correlator. For these, we find the appearance of interferences on top of the above-mentioned fine-structure as well as atypical behaviour at small scales. For instance, we expect the rescaled strain power spectrum generated by long cosmic strings in the matter era to oscillate around a scale invariant plateau. These singular sources are also shown to produce orders of magnitude difference between the rescaled strain spectra and the energy density parameter suggesting that only the former should be used for making reliable observable predictions. Finally, we discuss how measuring such a fine structure in the SGWB could disambiguate the possible cosmological sources.
40 pages, 7 figures, uses jcappub. References and discussions added, matches published version
References in corpus (14)
- The NANOGrav 12.5-year Data Set: Search For An Isotropic Stochastic Gravitational-Wave Background
- Improved Calculation of the Primordial Gravitational Wave Spectrum in the Standard Model
- CMB power spectrum contribution from cosmic strings using field-evolution simulations of the Abelian Higgs model
- Exact Scale-Invariant Background of Gravitational Waves from Cosmic Defects
- Oscillations in the stochastic gravitational wave background from sharp features and particle production during inflation
- Small-Angle CMB Temperature Anisotropies Induced by Cosmic Strings
- A new tension in the cosmological model from primordial deuterium?
- The CMB temperature bispectrum induced by cosmic strings
- Irreducible background of gravitational waves from a cosmic defect network: update and comparison of numerical techniques
- A Demonstration of Improved Constraints on Primordial Gravitational Waves with Delensing
- CMB power spectrum of Nambu-Goto cosmic strings
- All sky CMB map from cosmic strings integrated Sachs-Wolfe effect
- On the frequency of gravitational waves
- Effects of cosmic strings with delayed scaling on CMB anisotropy