CMB Constraints on the Stochastic Gravitational-Wave Background at Mpc scales
arXiv:1904.02115 · doi:10.1103/PhysRevD.100.021303
Abstract
We present robust constraints on the stochastic gravitational waves (GWs) at Mpc scales from the cosmic microwave background (CMB) data. CMB constraints on GWs are usually characterized as the tensor-to-scalar ratio, assuming specifically a power-law form of the primordial spectrum, and are obtained from the angular spectra of CMB. Here, we relax the assumption of the power-law form, and consider to what extent one can constrain a monochromatic GW at shorter wavelengths. Previously, such a constraint has been derived at the wavelengths larger than the resolution scale of the CMB measurements, typically above Mpc (below Hz in frequency). However, GWs whose wavelength is much shorter than Mpc can imprint a small but non-negligible signal on CMB anisotropies at observed angular scales, . Here, using the CMB temperature, polarization, and lensing data set, we obtain the best constraints to date at Hz of the GWs produced before the time of decoupling, which are tighter than those derived from the astrometric measurements and upper bounds on extra radiations. In the future, the constraints on GWs at Mpc scales will be further improved by several orders of magnitude with the precision -mode measurement on large scales, .
7 pages, 5 figures, Accepted for publication in PRD Rapid Communications
References in corpus (12)
- Ultralight scalars as cosmological dark matter
- A Joint Analysis of BICEP2/Keck Array and Planck Data
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- Extended Limber Approximation
- Stochastic gravitational wave background from smoothed cosmic string loops
- A new cosmic microwave background constraint to primordial gravitational waves
- Measurements of Sub-degree B-mode Polarization in the Cosmic Microwave Background from 100 Square Degrees of SPTpol Data
- VLBI measurement of the secular aberration drift
- Stochastic gravitational waves from cosmic string loops in scaling
- Improved constraint on the primordial gravitational-wave density using recent cosmological data and its impact on cosmic string models
- Cosmic Shear from Scalar-Induced Gravitational Waves
- Future detectability of gravitational-wave induced lensing from high-sensitivity CMB experiments