On the formation of GW190814
Wenbin Lu, Paz Beniamini, and Cl\'ement Bonnerot (Caltech)

TL;DR
This paper proposes that GW190814 resulted from a hierarchical triple system where a second-generation merger occurred, predicting specific properties of such events and their implications for gravitational wave sources.
Contribution
It introduces a novel hierarchical triple system model for GW190814, explaining its unique masses and predicting observable signatures and population characteristics.
Findings
Secondary spin in GW190814-like systems is 0.6 to 0.7.
Component mass distribution peaks between 2.5 and 3.5 solar masses.
Approximately 10% of GW190814-like events have eccentricity > 0.1 near 10 mHz.
Abstract
The LIGO-Virgo collaboration recently reported a puzzling event, GW190814, with component masses of 23 and 2.6 solar masses. Motivated by the relatively small rate of such a coalescence and the fact that the mass of the secondary is close to the total mass of known binary neutron star (bNS) systems, we propose that GW190814 was a second-generation merger from a hierarchical triple system, i.e., the remnant from the bNS coalescence was able to merge again with the 23 Msun black hole (BH) tertiary. We show that this occurs at a sufficiently high probability provided that the semimajor axis of the outer orbit is less than a few AU at the time of bNS coalescence. It remains to be explored whether the conditions for the formation of such tight triple systems are commonly realized in the Universe, especially in low metallicity (less than 0.1 solar) environments. Our model provides a number of…
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