Variability-selected intermediate mass black hole candidates in dwarf galaxies from ZTF and WISE
Charlotte Ward, Suvi Gezari, Peter Nugent, Eric C. Bellm, Richard, Dekany, Andrew Drake, Dmitry A. Duev, Matthew J. Graham, Mansi M. Kasliwal,, Erik C. Kool, Frank J. Masci, Reed L. Riddle

TL;DR
This study identifies intermediate mass black hole candidates in dwarf galaxies using variability in optical and mid-infrared data, revealing many hidden AGN missed by traditional methods and highlighting the effectiveness of variability searches.
Contribution
It introduces a novel variability-based method to detect IMBH candidates in dwarf galaxies, uncovering many previously missed AGN and providing insights into their properties.
Findings
44 optical variability-selected AGN candidates in dwarf galaxies.
148 mid-IR variability-selected AGN candidates in dwarf galaxies.
Most IMBH candidates would be missed by spectroscopic methods.
Abstract
While it is difficult to observe the first black hole seeds in the early Universe, we can study intermediate mass black holes (IMBHs) in local dwarf galaxies for clues about their origins. In this paper we present a sample of variability--selected AGN in dwarf galaxies using optical photometry from the Zwicky Transient Facility (ZTF) and forward--modeled mid--IR photometry of time--resolved Wide--field Infrared Survey Explorer ({\it WISE}) coadded images. We found that 44 out of 25,714 dwarf galaxies had optically variable AGN candidates, and 148 out of 79,879 dwarf galaxies had mid--IR variable AGN candidates, corresponding to active fractions of \% and \% respectively. We found that spectroscopic approaches to AGN identification would have missed 81\% of our ZTF IMBH candidates and 69\% of our {\it WISE} IMBH candidates. Only candidates have been detected…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
