Testing spacetime symmetry through gravitational waves from extreme-mass-ratio inspirals
arXiv:2009.00028 · doi:10.1103/PhysRevD.102.064041
Abstract
One of the primary aims of upcoming space-borne gravitational wave detectors is to measure radiation in the mHz range from extreme-mass-ratio inspirals. Such a detection would place strong constraints on hypothetical departures from a Kerr description for astrophysically stable black holes. The Kerr geometry, which is unique in general relativity, admits a higher-order symmetry in the form of a Carter constant, which implies that the equations of motion describing test particle motion in a Kerr background are Liouville-integrable. In this article, we investigate whether the Carter symmetry itself is discernible from a generic deformation of the Kerr metric in the gravitational waveforms for such inspirals. We build on previous studies by constructing a new metric which respects current observational constraints, describes a black hole, and contains two non-Kerr parameters, one of which controls the presence or absence of the Carter symmetry, thereby controlling the existence of chaotic orbits, and another which serves as a generic deformation parameter. We find that these two parameters introduce fundamentally distinct features into the orbital dynamics, and evince themselves in the gravitational waveforms through a significant dephasing. Although only explored in the quadrupole approximation, this, together with a Fisher metric analysis, suggests that gravitational wave data analysis may be able to test, in addition to the governing theory of gravity, the underlying symmetries of spacetime.
14 pages, 7 figures, matches published version
References in corpus (20)
- Laser Interferometer Space Antenna
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA
- Using LISA EMRI sources to test off-Kerr deviations in the geometry of massive black holes
- No-hair theorem for Black Holes in Astrophysical Environments
- Observable Properties of Orbits in Exact Bumpy Spacetimes
- Extreme- and Intermediate-Mass Ratio Inspirals in Dynamical Chern-Simons Modified Gravity
- Kerr Black Holes are Not Unique to General Relativity
- The influence of the hydrodynamic drag from an accretion torus on extreme mass-ratio inspirals
- How to observe a non-Kerr spacetime
- Testing Chern-Simons Modified Gravity with Gravitational-Wave Detections of Extreme-Mass-Ratio Binaries
- Gravitational waves from Extreme Mass Ratio Inspirals in non-pure Kerr spacetimes
- Nonlinear gravitational self-force. I. Field outside a small body
- The non-integrability of the Zipoy-Voorhees metric
- Importance of transient resonances in extreme-mass-ratio inspirals
- Growth of resonances and chaos for a spinning test particle in the Schwarzschild background
- The Astrophysics of Resonant Orbits in the Kerr Metric
- Investigating spinning test particles: spin supplementary conditions and the Hamiltonian formalism
- Gravitational waves from extreme mass ratio inspirals around bumpy black holes
- Gravitational perturbations of a Kerr black hole in gravity
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- Gravitational-wave glitches: resonant islands and frequency jumps in non-integrable extreme-mass-ratio inspirals
- The shadows of accelerating Kerr-Newman black hole and constraints from M87*
- Imprints of extra dimensions in eccentric extreme-mass-ratio inspirals gravitational waveforms
- Post-adiabatic waveforms from extreme mass ratio inspirals in the presence of dark matter
- Spectral instability of horizonless compact objects within astrophysical environments
- Extreme mass-ratio inspirals and extra dimensions: Insights from modified Teukolsky framework
- Taxonomy of periodic orbits and gravitational waves in a non-rotating Destounis-Suvorov-Kokkotas black hole spacetime
- Chaotic dynamics of pulsating spheres orbiting black holes
- Chaotic orbital dynamics of pulsating stars around black holes surrounded by dark matter halos
- Extreme mass ratio inspirals into black holes surrounded by matter: Resonance crossings