Black holes and fundamental fields in Numerical Relativity: initial data construction and evolution of bound states
arXiv:1401.1548 · doi:10.1103/PhysRevD.89.104032
Abstract
Fundamental fields are a natural outcome in cosmology and particle physics and might therefore serve as a proxy for more complex interactions. The equivalence principle implies that all forms of matter gravitate, and one therefore expects relevant, universal imprints of new physics in strong field gravity, such as that encountered close to black holes. Fundamental fields in the vicinities of supermassive black holes give rise to extremely long-lived, or even unstable, configurations which slowly extract angular momentum from the black hole or simply evolve non-linearly over long timescales, with important implications for particle physics and gravitational-wave physics. Here, we perform a fully non-linear study of scalar-field condensates around rotating black holes. We provide novel ways to specify initial data for the Einstein-Klein-Gordon system, with potential applications in a variety of scenarios. Our numerical results confirm the existence of long-lived bar-modes which act as lighthouses for gravitational wave emission: the scalar field condenses outside the black hole geometry and acts as a constant frequency gravitational-wave source for very long timescales. This effect could turn out to be a potential signature of beyond standard model physics and also a promising source of gravitational waves for future gravitational wave detectors.
24 pages, 15 figures; v2. Overall revision including substantial improvements in the discussion of the initial data, refs added
References in corpus (17)
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Instability of the massive Klein-Gordon field on the Kerr spacetime
- Superradiant instabilities in astrophysical systems
- How to move a black hole without excision: gauge conditions for the numerical evolution of a moving puncture
- Simulating coalescing compact binaries by a new code SACRA
- Binary black-hole evolutions of excision and puncture data
- Bosenova collapse of axion cloud around a rotating black hole
- Stability and quasinormal modes of the massive scalar field around Kerr black holes
- Classical instability of Kerr-AdS black holes and the issue of final state
- Time evolution of superradiant instabilities for charged black holes in a cavity
- Schwarzschild black holes can wear scalar wigs
- Instability of Flat Space Enclosed in a Cavity
- Black Hole Superradiance in Dynamical Spacetime
- Black holes in a box: towards the numerical evolution of black holes in AdS
- Schwarzschild scalar wigs: spectral analysis and late time behavior
- Evolution of near-extremal-spin black holes using the moving puncture technique
- Collapse of self-interacting fields in asymptotically flat spacetimes: do self-interactions render Minkowski spacetime unstable?
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- On the nonlinear instability of confined geometries
- Growth of accretion driven scalar hair around Kerr black holes
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- Stability of gravitating charged-scalar solitons in a cavity
- Gravitational waves from binary black hole mergers surrounded by scalar field clouds: Numerical simulations and observational implications
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- Self-gravitating black hole scalar wigs
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- Asymptotically flat black holes with scalar hair: a review
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- Superradiance in massive vector fields with spatially varying mass
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- Quasistationary solutions of scalar fields around accreting black holes
- Numerical Relativity and High Energy Physics: Recent Developments
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- Impact of ultralight bosonic dark matter on the dynamical bar-mode instability of rotating neutron stars
- Challenging theories of gravitation: dark matter, compact objects and gravitational waves
- On the effect of scalar fields on Hawking radiation and quasinormal modes of black holes
- Discrete Black Holes
- Ring formation from black hole superradiance through repeated particle production on bound orbits