Cosmic Pairs: A DESI Census of Dual and Offset AGN as Precursors to Massive Black Hole Binaries
arXiv:2607.27390
The paper presents a large, uniformly selected spectroscopic catalog of dual and offset active galactic nuclei from the first DESI data release, analyzing their host galaxy properties and predicting their evolution into massive black hole binaries detectable by LISA.
Abstract
We present a systematic census of dual and offset active galactic nuclei (AGN) using spectroscopic data from the first data release (DR1) of the Dark Energy Spectroscopic Instrument (DESI). After correcting for observational systematics, our final sample contains dual AGN and 27,000 galaxy pairs containing one AGN over the redshift range . This sample expands the known dual AGN sample by orders of magnitude at , includes dwarf dual AGN candidates in a regime where only a handful were previously known, and triples the census at . Dual AGN are preferentially found at small separations, consistent with merger-driven triggering of AGN activity. The two members of a pair differ in their star formation response: the more massive (primary) host changes little with separation, while the less massive (secondary) lies dex above matched inactive and one-AGN companions at the same projected separation in main-sequence offset. Using ASTRID simulations, we predict that the fraction of DESI dual AGN whose central black holes will merge by increases with redshift, reaching by , while the fraction producing LISA-detectable mergers peaks at near . These results provide the largest uniformly selected spectroscopic sample of kpc-scale dual and offset AGN candidates from a single survey, connecting their host-galaxy and AGN demographics to the progenitor population of massive black hole mergers detectable by LISA.
38 pages, 18 figures, 1 table. To be submitted to ApJ