Mass-redshift Degeneracy for Gravitational-wave Sources in the Vicinity of a Supermassive Black Hole
arXiv:1703.10543 · doi:10.1093/mnrasl/slz046
Abstract
Retrieving the mass of a gravitational-wave (GW) source is a fundamental but difficult problem because the mass is degenerate with redshift. In astronomy, three types of redshift exist, namely cosmological, Doppler, and gravitational redshift, but the latter two are normally too weak to affect the observation. In this Letter, we show that the current astrophysical models allow binary black holes (BBHs) to merge within Schwarzschild radii of a supermassive black hole (SMBH). We find that in this case both the Doppler and gravitational redshift are significant, and in the most extreme condition they could increase the "apparent" black-hole mass and distance by a factor of . We show that such a factor is consistent with the distribution in the distance-mass diagram of the ten BBHs detected so far by LIGO/Virgo. We also discuss the difficulties of this redshift scenario caused by the low event rate predicted by the current models, as well the potential solutions.
6 pages, 3 figures
References in corpus (21)
- GWTC-1: A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs
- Binary Black Hole Population Properties Inferred from the First and Second Observing Runs of Advanced LIGO and Advanced Virgo
- On stellar-mass black hole mergers in AGN disks detectable with LIGO
- Black Hole Mergers in Galactic Nuclei Induced by the Eccentric Kozai-Lidov Effect
- Stellar remnants in galactic nuclei: mass segregation
- Search for gravitational lensing signatures in LIGO-Virgo binary black hole events
- Greatly enhanced merger rates of compact-object binaries in non-spherical nuclear star clusters
- Mergers of Stellar-Mass Black Holes in Nuclear Star Clusters
- Gravitational wave sources from inspiralling globular clusters in the Galactic Centre and similar environments
- What if LIGO's gravitational wave detections are strongly lensed by massive galaxy clusters?
- Probing stellar binary black hole formation in galactic nuclei via the imprint of their center of mass acceleration on their gravitational wave signal
- Secular Evolution Of Binaries Near Massive Black Holes: Formation of compact binaries, merger/collision products and G2-like objects
- A New Type of Extreme-mass-ratio Inspirals Produced by Tidal Capture of Binary Black Holes
- Black hole kicks as new gravitational wave observables
- Revealing the formation of stellar-mass black hole binaries: The need for deci-Hertz gravitational wave observatories
- Stellar binaries in galactic nuclei: tidally stimulated mergers followed by tidal disruptions
- Reinterpreting Low Frequency LIGO/Virgo Events as Magnified Stellar-Mass Black Holes at Cosmological Distances
- Testing general relativity using binary extreme-mass-ratio inspirals
- Distortion of Gravitational-Wave Packets Due to their Self-Gravity
- Modified evolution of stellar binaries from supermassive black hole binaries
- Busting Up Binaries: Encounters Between Compact Binaries and a Supermassive Black Hole
Cited by in corpus (42)
- Black hole and neutron star mergers in galactic nuclei
- The Missing Link in Gravitational-Wave Astronomy: Discoveries waiting in the decihertz range
- Accretion-modified Stars in Accretion Disks of Active Galactic Nuclei: Gravitational Wave Bursts and Electromagnetic Counterparts from Merging Stellar Black Hole Binaries
- Birth, life, and death of black hole binaries around supermassive black holes: dynamical evolution of gravitational wave sources
- The last migration trap of compact objects in AGN accretion disc
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Repeated Gravitational Lensing of Gravitational Waves in Hierarchical Black Hole Triples
- Using final black hole spins and masses to infer the formation history of the observed population of gravitational wave sources
- Detection of astrophysical gravitational wave sources by TianQin and LISA
- Quiescent and active galactic nuclei as factories of merging compact objects in the era of gravitational-wave astronomy
- Phase shift of gravitational waves induced by aberration
- Detecting the Beaming Effect of Gravitational Waves
- Impact of a Spinning Supermassive Black Hole on the Orbit and Gravitational Waves of a Nearby Compact Binary
- Detecting Accelerating Eccentric Binaries in the LISA Band
- Testing general relativity using binary extreme-mass-ratio inspirals
- Direct determination of supermassive black hole properties with gravitational-wave radiation from surrounding stellar-mass black hole binaries
- Waltzing binaries: Probing line-of-sight acceleration of merging compact objects with gravitational waves
- Excitation of gravitational wave modes by a center-of-mass velocity of the source
- Astrophysical Gravitational-Wave Echoes from Galactic Nuclei
- A Measurement of the Hubble Constant using Gravitational Waves from the Binary Merger GW190814
- Fake massive black holes in the milli-Hertz gravitational-wave band
- The Dark Side of Using Dark Sirens to Constrain the Hubble-Lemaître Constant
- Binaries Wandering Around Supermassive Black Holes Due To Gravito-electromagnetism
- Degeneracy between mass and peculiar acceleration for the double white dwarfs in the LISA band
- The three body first post-Newtonian effects on the secular dynamics of a compact binary near a spinning supermassive black hole
- Moving gravitational wave sources at cosmological distances: Impact on the measurement of the Hubble constant
- Calculating the Gravitational Waves Emitted from High-speed Sources
- Relativistic model of binary extreme-mass-ratio inspiral systems and their gravitational radiation
- Forward Ray Tracing and Hot Spots in Kerr Spacetime
- Can a binary neutron star merger in the vicinity of a supermassive black hole enable a detection of a post-merger gravitational wave signal?
- The appearance of a merging binary black hole very close to a spinning supermassive black hole
- Retrieving the True Masses of Gravitational-wave Sources
- Fundamental Physics and Cosmology with TianQin
- Distortion of Gravitational-wave Signals by Astrophysical Environments
- Multimessenger hierarchical triple merger gravitational-wave event pair GW190514-GW190521 inside AGN J124942.3 + 344929
- The missing link in gravitational-wave astronomy: A summary of discoveries waiting in the decihertz range
- Amplification of gravitational wave by a Kerr black hole
- Astrophysics with the Laser Interferometer Space Antenna
- Impact of gravitational lensing on black hole mass function inference with third-generation gravitational wave detectors
- Calibrating systematic errors in the distance determination with the luminosity-distance space large scale structure of dark sirens and its potential applications
- Tests for the existence of horizon through gravitational waves from a small binary in the vicinity of a massive object
- Constraining Kerr supermassive black hole properties using gravitational waves from inspiraling stellar-mass binary black holes