An Accreting, Anomalously Low-mass Black Hole at the Center of Low-mass Galaxy IC 750

  • Zaw I
  • Rosenthal M
  • Katkov I
  • et al.
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Abstract

We present a multiwavelength study of the active galactic nucleus in the nearby ( D  = 14.1 Mpc) low-mass galaxy IC 750, which has circumnuclear 22 GHz water maser emission. The masers trace a nearly edge-on, warped disk ∼0.2 pc in diameter, coincident with the compact nuclear X-ray source that lies at the base of the ∼kiloparsec-scale extended X-ray emission. The position–velocity structure of the maser emission indicates that the central black hole (BH) has a mass less than 1.4 × 10 5   M ⊙ . Keplerian rotation curves fitted to these data yield enclosed masses between 4.1 × 10 4 M ⊙ and 1.4 × 10 5 M ⊙ , with a mode of 7.2 × 10 4 M ⊙ . Fitting the optical spectrum, we measure a nuclear stellar velocity dispersion km s −1 . From near-infrared photometry, we fit a bulge mass of (7.3 ± 2.7) × 10 8 M ⊙ and a stellar mass of 1.4 × 10 10 M ⊙ . The mass upper limit of the intermediate-mass BH in IC 750 falls roughly two orders of magnitude below the M BH – σ * relation and roughly one order of magnitude below the M BH – M Bulge and M BH – M * relations—larger than the relations’ intrinsic scatters of 0.58 ± 0.09 dex, 0.69 dex, and 0.65 ± 0.09 dex, respectively. These offsets could be due to larger scatter at the low-mass end of these relations. Alternatively, BH growth is intrinsically inefficient in galaxies with low bulge and/or stellar masses, which causes the BHs to be undermassive relative to their hosts, as predicted by some galaxy evolution simulations.

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Zaw, I., Rosenthal, M. J., Katkov, I. Yu., Gelfand, J. D., Chen, Y.-P., Greenhill, L. J., … Noori, H. A. (2020). An Accreting, Anomalously Low-mass Black Hole at the Center of Low-mass Galaxy IC 750. The Astrophysical Journal, 897(2), 111. https://doi.org/10.3847/1538-4357/ab9944

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