High-Redshift Merger Model for Low-Frequency Gravitational Wave Background
arXiv:2405.17077 · doi:10.3847/1538-4357/ad5c68
Abstract
In 2023, the Pulsar Timing Array (PTA) Collaborations announced the discovery of a gravitational wave background (GWB), predominantly attributed to supermassive black hole binary (SMBHB) mergers. However, the detected GWB is several times stronger than the default value expected from galactic observations at low and moderate redshifts. Recent findings by the James Webb Space Telescope (JWST) have unveiled a substantial number of massive, high-redshift galaxies, suggesting more massive SMBHB mergers at these early epochs. Motivated by these findings, we propose an "early merger" model that complements the standard merger statistics by incorporating these early, massive galaxies. We compare the early and standard "late merger" models, which assume peak merger rates in the local Universe, and match both merger models to the currently detected GWB. Our analysis shows that the early merger model has a significantly lower detection probability for single binaries and predicts a ~30% likelihood that the first detectable single source will be highly redshifted and remarkably massive with rapid frequency evolution. In contrast, the late merger model predicts a nearly monochromatic first source at low redshift. The future confirmation of an enhanced population of massive high-redshift galaxies and the detection of fast-evolving binaries would strongly support the early merger model, offering significant insights into the evolution of galaxies and SMBHs.
18 pages, 10 figures. Published in ApJ
References in corpus (15)
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- The galaxy stellar mass function at 3.5<z<7.5 in the CANDELS/UDS, GOODS-South, and HUDF fields
- Bulge mass is king: The dominant role of the bulge in determining the fraction of passive galaxies in the Sloan Digital Sky Survey
- Expected properties of the first gravitational wave signal detected with pulsar timing arrays
- JWST CEERS & JADES Active Galaxies at z = 4-7 Violate the Local Relation at : Implications for Low-Mass Black Holes and Seeding Models
- Observational constraints on the merger history of galaxies since : Probabilistic galaxy pair counts in the CANDELS fields
- The Effect of Orbital Eccentricity on Gravitational Wave Background Radiation from Supermassive Black Hole Binaries
- Time-domain Implementation of the Optimal Cross-Correlation Statistic for Stochastic Gravitational-Wave Background Searches in Pulsar Timing Data
- Massive Close Pairs Measure Rapid Galaxy Assembly in Mergers at High Redshift
- Orbital Evolution of Binaries in Circumbinary Disks
- Dynamical evolution of cosmic supermassive binary black holes and their gravitational wave radiation
- The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
- Overmassive black holes at cosmic noon: linking the local and the high-redshift Universe
- Quality over Quantity: Optimizing pulsar timing array analysis for stochastic and continuous gravitational wave signals