English

Supermassive black holes at high redshifts

High Energy Astrophysical Phenomena 2019-03-15 v1

Abstract

MeV blazars are the most luminous persistent sources in the Universe and emit most of their energy in the MeV band. These objects display very large jet powers and accretion luminosities and are known to host black holes with a mass often exceeding 109M10^9 M_{\odot}. An MeV survey, performed by a new generation MeV telescope which will bridge the entire energy and sensitivity gap between the current generation of hard X-ray and gamma-ray instruments, will detect >>1000 MeV blazars up to a redshift of z=56z=5-6. Here we show that this would allow us: 1) to probe the formation and growth mechanisms of supermassive black holes at high redshifts, 2) to pinpoint the location of the emission region in powerful blazars, 3) to determine how accretion and black hole spin interplay to power the jet.

Keywords

Cite

@article{arxiv.1903.06106,
  title  = {Supermassive black holes at high redshifts},
  author = {Vaidehi S. Paliya and Marco Ajello and Lea Marcotulli and John Tomsick and Jeremy S. Perkins and Elisa Prandini and Filippo D'Ammando and Alessandro De Angelis and David Thompson and Hui Li and Alberto Dominguez and Volker Beckmann and Sylvain Guiriec and Zorawar Wadiasingh and Paolo Coppi and J. Patrick Harding and Maria Petropoulou and John W. Hewitt and Roopesh Ojha and Alexandre Marcowith and Michele Doro and Daniel Castro and Matthew Baring and Elizabeth Hays and Elena Orlando and Sylvain Guiriec and Vladimir Bozhilov and Ivan Agudo and Tonia Venters and Julie McEnery and Lih-Sin The and Dieter Hartmann and Sara Buson and Francesco Longo and Dario Gasparrini},
  journal= {arXiv preprint arXiv:1903.06106},
  year   = {2019}
}

Comments

7 pages, 4 figure. Submitted to the Astro2020 call for Science White Papers