Potential Black Hole Seeding of the Spiral Galaxy NGC 4424 via an Infalling Star Cluster
Alister W. Graham, Roberto Soria, Bogdan C. Ciambur, Benjamin L., Davis, Douglas A. Swartz

TL;DR
This paper reports the discovery of a star cluster near galaxy NGC 4424 that likely contains a black hole, suggesting a possible mechanism for black hole seeding in bulgeless galaxies through infalling star clusters.
Contribution
It presents evidence of a captured nuclear star cluster with a potential black hole, supporting the idea of black hole seeding via infalling star clusters in galaxy mergers.
Findings
Discovery of Nikhuli star cluster near NGC 4424 with a high-energy X-ray source.
Evidence supporting the presence of an intermediate-mass black hole in Nikhuli.
Implication of black hole seeding in bulgeless galaxies through star cluster infall.
Abstract
Galaxies can grow through their mutual gravitational attraction and subsequent union. While orbiting a regular high-surface-brightness galaxy, the body of a low-mass galaxy can be stripped away. However, the stellar heart of the infalling galaxy, if represented by a tightly-bound nuclear star cluster, is more resilient. From archival Hubble Space Telescope images, we have discovered a red, tidally-stretched star cluster positioned ~5 arcseconds (~400 pc in projection) from, and pointing toward the center of, the post-merger spiral galaxy NGC 4424. The star cluster, which we refer to as `Nikhuli', has a near-infrared luminosity of (6.88+/-1.85)x10^6 L_{solar,F160W} and likely represents the nucleus of a captured/wedded galaxy. Moreover, from our Chandra X-ray Observatory image, Nikhuli is seen to contain a high-energy X-ray point source, with L_{0.5-8 keV} = 6.31^{+7.50}_{-3.77}x10^{38}…
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