Recent nondetection 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 ≳1010M⊙ 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 ...
Gravitational waves detected by advanced ground-based detectors have allowed studying the Universe i...
Shannon RM, Ravi V, Lentati LT, et al. Gravitational waves from binary supermassive black holes miss...
On a time scale of years to decades, gravitational wave (GW) astronomy will become a reality. Low fr...
Recent nondetection of gravitational-wave backgrounds from pulsar timing arrays casts further uncert...
Recent nondetection of gravitational-wave backgrounds from pulsar timing arrays casts further uncert...
We perform a search for continuous gravitational waves from individual supermassive black hole binar...
We perform a search for continuous gravitational waves from individual supermassive black hole binar...
We perform a search for continuous gravitational waves from individual supermassive black hole binar...
Large-area sky surveys show that massive galaxies undergo at least one major merger in a Hubble time...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
NANOGrav and other Pulsar Timing Arrays (PTAs) have discovered a common-spectrum process in the nHz ...
We assess the effects of supermassive black hole (SMBH) environments on the gravitational wave (GW) ...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
Gravitational waves detected by advanced ground-based detectors have allowed studying the Universe i...
Shannon RM, Ravi V, Lentati LT, et al. Gravitational waves from binary supermassive black holes miss...
On a time scale of years to decades, gravitational wave (GW) astronomy will become a reality. Low fr...
Recent nondetection of gravitational-wave backgrounds from pulsar timing arrays casts further uncert...
Recent nondetection of gravitational-wave backgrounds from pulsar timing arrays casts further uncert...
We perform a search for continuous gravitational waves from individual supermassive black hole binar...
We perform a search for continuous gravitational waves from individual supermassive black hole binar...
We perform a search for continuous gravitational waves from individual supermassive black hole binar...
Large-area sky surveys show that massive galaxies undergo at least one major merger in a Hubble time...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
NANOGrav and other Pulsar Timing Arrays (PTAs) have discovered a common-spectrum process in the nHz ...
We assess the effects of supermassive black hole (SMBH) environments on the gravitational wave (GW) ...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
Gravitational waves are expected to be radiated by supermassive black hole binaries formed during ga...
Gravitational waves detected by advanced ground-based detectors have allowed studying the Universe i...
Shannon RM, Ravi V, Lentati LT, et al. Gravitational waves from binary supermassive black holes miss...
On a time scale of years to decades, gravitational wave (GW) astronomy will become a reality. Low fr...