The Black Hole Mass Function Derived from Local Spiral Galaxies
Abstract
We present our determination of the nuclear supermassive black hole (SMBH) mass function for spiral galaxies in the Local Universe, established from a volume-limited sample consisting of a statistically complete collection of the brightest spiral galaxies in the Southern Hemisphere. Our SMBH mass function agrees well at the high-mass end with previous values given in the literature. At the low-mass end, inconsistencies exist in previous works that still need to be resolved, but our work is more in line with expectations based on modeling of SMBH evolution. This low-mass end of the spectrum is critical to our understanding of the mass function and evolution of SMBHs since the epoch of maximum quasar activity. A luminosity distance 25.4 and an absolute B-band magnitude -19.12 define the sample. These limits define a sample of 140 spiral galaxies, with 128 measurable pitch angles to establish the pitch angle distribution for this sample. This pitch angle distribution function may be useful in the study of the morphology of late-type galaxies. We then use an established relationship between the pitch angle and the mass of the central SMBH in a host galaxy in order to estimate the mass of the 128 respective SMBHs in this sample. This result effectively gives us the distribution of mass for SMBHs residing in spiral galaxies over a lookback time 82.1 and contained within a comoving volume of 3.37 . We estimate the density of SMBHs residing in spiral galaxies in the Local Universe is . Thus, our derived cosmological SMBH mass density for spiral galaxies is .
Keywords
Cite
@article{arxiv.1405.5876,
title = {The Black Hole Mass Function Derived from Local Spiral Galaxies},
author = {Benjamin L. Davis and Joel C. Berrier and Lucas Johns and Douglas W. Shields and Matthew T. Hartley and Daniel Kennefick and Julia Kennefick and Marc S. Seigar and Claud H. S. Lacy},
journal= {arXiv preprint arXiv:1405.5876},
year = {2018}
}
Comments
16 pages, 12 figures, 5 tables