On the search of electromagnetic cosmological counterparts to coalescences of massive black hole binaries
arXiv:astro-ph/0605624 · doi:10.1111/j.1365-2966.2006.10905.x
Abstract
We explore the nature of possible electromagnetic counterparts of coalescences of massive black hole binaries at cosmological distances detectable by the Laser Interferometer Space Antenna (LISA). An electromagnetic precursor, during the last year of gravitational wave (GW)-driven inspiral, or an afterglow within few years after coalescence, may highlight the position in the sky of galaxies hosting LISA sources. We show that observations of precursors and afterglows are mutually exclusive, depending on the mass of the primary black hole. Precursors are expected to occur in binaries where the primary (more massive) black hole is heavier than ~10^7 \Msun. They may correspond to on-off states of accretion, i.e., to a bright X-ray source decaying into quiescence before black hole coalescence, and are likely associated to disturbed galaxies showing signs of ongoing starbursts. Coalescences of lighter binaries, with masses <5x10^6 \Msun, lack of any precursor, as gas is expected to be consumed long before the GW-driven orbital decay. Such events would not be hosted by (massive) galaxies with an associated starburst, given the slow binary inspiral time compared to the typical time scale of starbursts. By contrast, coalescence, for such light binaries, is followed by an electromagnetic afterglow, i.e., an off-on accretion state rising in <20 yrs. Using a cosmological merger tree algorithm, we show that future X-ray missions such as XEUS will be able to identify, in 20 yrs operation, almost all the massive BH binary detectable by LISA, and, in only 5 yrs, all the LISA sources at z>6.
7 pages, 6 figures, MNRAS, in press
References in corpus (1)
Cited by in corpus (27)
- The Population of Viscosity- and Gravitational Wave-Driven Supermassive Black Hole Binaries Among Luminous AGN
- Supermassive black hole binaries in gaseous and stellar circumnuclear discs: orbital dynamics and gas accretion
- Precision of Hubble constant derived using black hole binary absolute distances and statistical redshift information
- The imprint of massive black hole formation models on the LISA data stream
- Pre-Merger Localization of Gravitational-Wave Standard Sirens With LISA: Triggered Search for an Electromagnetic Counterpart
- Final spins from the merger of precessing binary black holes
- Modeling of Emission Signatures of Massive Black Hole Binaries: I Methods
- Localizing coalescing massive black hole binaries with gravitational waves
- Reaction of Accretion Disks to Abrupt Mass Loss During Binary Black Hole Merger
- Observing the inspiral of coalescing massive black hole binaries with LISA in the era of Multi-Messenger Astrophysics
- Massive black hole binaries in LISA: multimessenger prospects and electromagnetic counterparts
- Observing white dwarfs orbiting massive black holes in the gravitational wave and electro-magnetic window
- Hunting for the host galaxy groups of binary black holes and the application in constraining Hubble constant
- Pre-Merger Localization of Gravitational-Wave Standard Sirens With LISA I: Harmonic Mode Decomposition
- Imprints of recoiling massive black-holes on the hot gas of early type galaxies
- Linking optical and infrared observations with gravitational wave sources through variability
- The Final Merger of Black-Hole Binaries
- Up to eleven: radiation from particles with arbitrary energy falling into higher-dimensional black holes
- Multimessenger study of merging massive black holes in the OBELISK simulation: gravitational waves, electromagnetic counterparts, and their link to galaxy and black hole populations
- Tuning Gravitationally Lensed Standard Sirens
- Cosmological Physics with Black Holes (and Possibly White Dwarfs)
- Estimating the fossil disc mass during supermassive black hole mergers: the importance of torque implementation
- Accelerated parameter estimation of supermassive black hole binaries in LISA using a meshfree approximation
- Astrophysical and relativistic modeling of the recoiling black-hole candidate in quasar 3C 186
- Rapid Parameter Estimation for Merging Massive Black Hole Binaries Using Continuous Normalizing Flows
- Listening Across the Cosmic Time: Standard Sirens from Ground- and Space-Based Missions in the Next Decade
- Weak lensing of bright standard sirens: prospects for