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Global Understanding of Accretion and Ejection around Black Holes

Global Understanding of Accretion and Ejection around Black Holes

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Accretion-ejection around compact objects, mainly around black holes, both in low mass, supermassive, and intermediate-mass, are rich and has been studied exhaustively. However, the subject is expanding and growing rapidly after the launch of different space-based satellites and ground-based telescopes in multiwavelength bands, leaving a range of questions on accretion and ejection mechanisms. The proper understanding of the underlying physical mechanisms responsible for observational evidence is still lacking for several reasons. With the advent of high-resolution satellite observations, it is possible to look at the problems globally as a complete package in a more consistent way. Recently, many new low mass black hole candidates have been discovered; however, very little is known about those systems, e.g., mass, spin parameter, and orbital period. The study in the spectro-temporal domain also needs proper understanding of spectral state change, quasi-periodic oscillation frequency evolution, hardness intensity diagram, and line emissions. The goal and motivation of this book are to focus on top-quality original works in the above-mentioned context, with important research facts that are written in a highly understandable way, from a theoretical, observational, and numerical simulation ground.This book is a collection of high-quality research work, which will give a compact and concise description of the overall view of the subject.

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Keywords

  • accretion discs
  • accretion disks—shock waves—radiation:dynamics
  • accretion of matter
  • active
  • Active galactic nuclei
  • Astronomy, space & time
  • BL Lacertae objects
  • black hole evolution
  • black hole physics
  • black string
  • blazars
  • broad line region
  • Galaxies
  • galaxies: active
  • galaxies: evolution
  • galaxies: jets
  • galaxies: nuclei
  • galaxies–quasars
  • geodesic orbits
  • gravitational waves
  • individual (Ton 599)
  • inverse-Compton emission
  • ionized gas
  • isofrequency
  • jets
  • Mathematics & science
  • n/a
  • OJ 287
  • optical spectroscopy
  • Physics
  • Radiative Transfer
  • radio galaxies
  • Reference, information & interdisciplinary subjects
  • relativistic jets
  • Research & information: general
  • rotating black holes
  • Seyfert 1 objects: individual: Mrk 335
  • supermassive black hole
  • supermassive black holes
  • synchrotron emission
  • X-rays
  • X-rays: binaries—stars individual: (V404 Cygni)—stars:black holes—accretion
  • X-Rays:binaries—stars individual: (XTE J1908+094)—stars:black holes—accretion

Links

DOI: 10.3390/books978-3-0365-5609-3

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