arXiv · 1512.04950
Detectability of Gravitational Waves from High-Redshift Binaries
Abstract
Recent non-detection of gravitational-wave backgrounds from pulsar timing arrays casts further uncertainty on the evolution of supermassive black hole binaries. We study the capabilities of current gravitational-wave observatories to detect individual binaries and demonstrate that, contrary to conventional wisdom, some are in principle detectable throughout the Universe. In particular, a binary with rest-frame mass $\gtrsim10^{10}\,M_\odot$ can be detected by current timing arrays at arbitrarily high redshifts. The same claim will apply for less massive binaries with more sensitive future arrays. As a consequence, future searches for nanohertz gravitational waves could be expanded to target evolving high-redshift binaries. We calculate the maximum distance at which binaries can be observed with pulsar timing arrays and other detectors, properly accounting for redshift and using realistic binary waveforms.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Pablo A. Rosado, Paul D. Lasky, Eric Thrane, Xingjiang Zhu, Ilya Mandel, Alberto Sesana. 2016-03-11. Detectability of Gravitational Waves from High-Redshift Binaries. https://doi.org/10.1103/physrevlett.116.101102
Cite the original work for its findings. Save a collection to share your selection of sources.