English

Quenching as a Contest between Galaxy Halos and their Central Black Holes

Astrophysics of Galaxies 2020-07-15 v3

Abstract

Existing models of galaxy formation have not yet explained striking correlations between structure and star-formation activity in galaxies, notably the sloped and moving boundaries that divide star-forming from quenched galaxies in key structural diagrams. This paper uses these and other relations to ``reverse-engineer'' the quenching process for central galaxies. The basic idea is that star-forming galaxies with larger radii (at a given stellar mass) have lower black-hole masses due to lower central densities. Galaxies cross into the green valley when the cumulative effective energy radiated by their black hole equals 4×\sim4\times their halo-gas binding energy. Since larger-radii galaxies have smaller black holes, one finds they must evolve to higher stellar masses in order to meet this halo-energy criterion, which explains the sloping boundaries. A possible cause of radii differences among star-forming galaxies is halo concentration. The evolutionary tracks of star-forming galaxies are nearly parallel to the green-valley boundaries, and it is mainly the sideways motions of these boundaries with cosmic time that cause galaxies to quench. BH-scaling laws for star-forming, quenched, and green-valley galaxies are different, and most BH mass growth takes place in the green valley. Implications include: the radii of star-forming galaxies are an important second parameter in shaping their black holes; black holes are connected to their halos but in different ways for star-forming, quenched, and green-valley galaxies; and the same BH-halo quenching mechanism has been in place since z3z \sim 3. We conclude with a discussion of black hole-galaxy co-evolution, the origin and interpretation of BH scaling laws.

Keywords

Cite

@article{arxiv.1909.10817,
  title  = {Quenching as a Contest between Galaxy Halos and their Central Black Holes},
  author = {Zhu Chen and S. M. Faber and David. C. Koo and Rachel S. Somerville and Joel R. Primack and Avishai Dekel and Aldo Rodríguez-Puebla and Yicheng Guo and Guillermo Barro and Dale D. Kocevski and A. van der Wel and Joanna Woo and Eric F. Bell and Jerome J. Fang and Henry C. Ferguson and Mauro Giavalisco and Marc Huertas-Company and Fangzhou Jiang and Susan Kassin and Lin Lin and Fengshan Liu and Yifei Luo and Zhijian Luo and Camilla Pacifici and Viraj Pandya and Samir Salim and Chenggang Shu and Sandro Tacchella and Bryan A. Terrazas and Hassen M. Yesuf},
  journal= {arXiv preprint arXiv:1909.10817},
  year   = {2020}
}

Comments

45 pages, 20 figures, 2 tables, accepted for publication in ApJ