Gravitational Waves from Quasicircular Extreme Mass-Ratio Inspirals as Probes of Scalar-Tensor Theories
arXiv:1112.3351 · doi:10.1103/PhysRevD.85.102003
Abstract
A stellar-mass compact object spiraling into a supermassive black hole, an extreme-mass-ratio inspiral (EMRI), is one of the targets of future gravitational-wave detectors and it offers a unique opportunity to test General Relativity (GR) in the strong-field. We study whether generic scalar-tensor (ST) theories can be further constrained with EMRIs. We show that in the EMRI limit, all such theories universally reduce to massive or massless Brans-Dicke theory and that black holes do not emit dipolar radiation to all orders in post-Newtonian (PN) theory. For massless theories, we calculate the scalar energy flux in the Teukolsky formalism to all orders in PN theory and fit it to a high-order PN expansion. We derive the PN ST corrections to the Fourier transform of the gravitational wave response and map it to the parameterized post-Einsteinian framework. We use the effective-one-body framework adapted to EMRIs to calculate the ST modifications to the gravitational waveform. We find that such corrections are smaller than those induced in the early inspiral of comparable-mass binaries, leading to projected bounds on the coupling that are worse than current Solar System ones. Brans-Dicke theory modifies the weak-field, with deviations in the energy flux that are largest at small velocities. For massive theories, superradiance can lead to resonances in the scalar energy flux that can lead to floating orbits outside the innermost stable circular orbit and that last until the supermassive black hole loses enough mass and spin-angular momentum. If such floating orbits occur in the frequency band of LISA, they would lead to a large dephasing (~1e6 rads), preventing detection with GR templates. A detection that is consistent with GR would then rule out floating resonances at frequencies lower than the lowest observed frequency, allowing for the strongest constraints yet on massive ST theories.
28 pages, 9 figures, 2 tables. Matches PRD version. Abstract abridged
References in corpus (30)
- Tests of general relativity from timing the double pulsar
- Instability of the massive Klein-Gordon field on the Kerr spacetime
- Black holes in scalar-tensor gravity
- Dynamical Chern-Simons Modified Gravity I: Spinning Black Holes in the Slow-Rotation Approximation
- Starbursts near supermassive black holes: young stars in the Galactic Center, and gravitational waves in LISA band
- Non-Spinning Black Holes in Alternative Theories of Gravity
- Faithful Effective-One-Body waveforms of small-mass-ratio coalescing black-hole binaries
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-spinning, equal-mass black holes
- An improved analytical description of inspiralling and coalescing black-hole binaries
- Gravitational radiation from compact binary systems in the massive Brans-Dicke theory of gravity
- Constraining Lorentz-violating, Modified Dispersion Relations with Gravitational Waves
- Effective one body approach to the dynamics of two spinning black holes with next-to-leading order spin-orbit coupling
- Post-Newtonian, Quasi-Circular Binary Inspirals in Quadratic Modified Gravity
- Gravitational self-force correction to the innermost stable circular orbit of a Schwarzschild black hole
- Floating and sinking: the imprint of massive scalars around rotating black holes
- Extreme- and Intermediate-Mass Ratio Inspirals in Dynamical Chern-Simons Modified Gravity
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-precessing, spinning, equal-mass black holes
- Evolution of inspiral orbits around a Schwarzschild black hole
- Towards adiabatic waveforms for inspiral into Kerr black holes: I. A new model of the source for the time domain perturbation equation
- Binary black hole merger in the extreme mass ratio limit
- Testing gravitational parity violation with coincident gravitational waves and short gamma-ray bursts
- Slowly-rotating stars and black holes in dynamical Chern-Simons gravity
- Towards adiabatic waveforms for inspiral into Kerr black holes: II. Dynamical sources and generic orbits
- Extreme Mass-Ratio Inspirals in the Effective-One-Body Approach: Quasi-Circular, Equatorial Orbits around a Spinning Black Hole
- Binary black hole merger in the extreme-mass-ratio limit: a multipolar analysis
- Bounding the mass of the graviton with gravitational waves: Effect of higher harmonics in gravitational waveform templates
- Bounding the mass of the graviton with gravitational waves: Effect of spin precessions in massive black hole binaries
- Effective Gravitational Wave Stress-energy Tensor in Alternative Theories of Gravity
- Perturbations of Schwarzschild Black Holes in Chern-Simons Modified Gravity
- Constraining the mass of the graviton using coalescing black-hole binaries
Cited by in corpus (106)
- The Confrontation between General Relativity and Experiment
- Testing General Relativity with Present and Future Astrophysical Observations
- Theoretical Physics Implications of the Binary Black-Hole Mergers GW150914 and GW151226
- Gravitational Wave Tests of General Relativity with Ground-Based Detectors and Pulsar Timing Arrays
- Prospects for Fundamental Physics with LISA
- New Horizons for Fundamental Physics with LISA
- Testing General Relativity with Low-Frequency, Space-Based Gravitational-Wave Detectors
- Black-Hole Bombs and Photon-Mass Bounds
- Neutron-star mergers in scalar-tensor theories of gravity
- Superradiant instabilities in astrophysical systems
- Extreme Gravity Tests with Gravitational Waves from Compact Binary Coalescences: (I) Inspiral-Merger
- Perturbations of slowly rotating black holes: massive vector fields in the Kerr metric
- Model-Independent Test of General Relativity: An Extended post-Einsteinian Framework with Complete Polarization Content
- Black Hole Based Tests of General Relativity
- Theory-Agnostic Constraints on Black-Hole Dipole Radiation with Multi-Band Gravitational-Wave Astrophysics
- Dynamical scalarization of neutron stars in scalar-tensor gravity theories
- Compact binary systems in scalar-tensor gravity: Equations of motion to 2.5 post-Newtonian order
- Astrophysical signatures of boson stars: quasinormal modes and inspiral resonances
- Detecting fundamental fields with LISA observations of gravitational waves from extreme mass-ratio inspirals
- Black holes with surrounding matter in scalar-tensor theories
- Matter around Kerr black holes in scalar-tensor theories: scalarization and superradiant instability
- Compact binary systems in scalar-tensor gravity. II. Tensor gravitational waves to second post-Newtonian order
- Numerical simulations of single and binary black holes in scalar-tensor theories: circumventing the no-hair theorem
- Theoretical Physics Implications of Gravitational Wave Observation with Future Detectors
- Detecting scalar fields with Extreme Mass Ratio Inspirals
- Compact binary systems in scalar-tensor gravity. III. Scalar waves and energy flux
- Selected topics in scalar-tensor theories and beyond
- Gravitational waveforms in scalar-tensor gravity at 2PN relative order
- The Science of the Einstein Telescope
- Perturbations of spinning black holes beyond General Relativity: Modified Teukolsky equation
- Late Inspiral and Merger of Binary Black Holes in Scalar-Tensor Theories of Gravity
- Prospects for axion searches with Advanced LIGO through binary mergers
- Neutron star mergers as a probe of modifications of general relativity with finite-range scalar forces
- Orbital fingerprints of ultralight scalar fields around black holes
- Eccentricity evolution of compact binaries and applications to gravitational-wave physics
- Extreme mass-ratio inspirals into black holes surrounded by scalar clouds
- Extreme mass ratio inspirals with spinning secondary: a detailed study of equatorial circular motion
- Exploring New Physics Frontiers Through Numerical Relativity
- Scientific Potential of DECIGO Pathfinder and Testing GR with Space-Borne Gravitational Wave Interferometers
- Extreme mass-ratio inspirals around a spinning horizonless compact object
- Tensor-multi-scalar theories: relativistic stars and 3+1 decomposition
- Detecting massive scalar fields with Extreme Mass-Ratio Inspirals
- Speed of gravitational waves and black hole hair
- Constraining alternative theories of gravity using pulsar timing arrays
- Black hole bombs and explosions: from astrophysics to particle physics
- Detecting Gravitational-waves from Extreme Mass Ratio Inspirals using Convolutional Neural Networks
- A Parametrized post-Einsteinian Framework for Gravitational Wave Bursts
- The tune of the universe: the role of plasma in tests of strong-field gravity
- Hidden-Sector Modifications to Gravitational Waves From Binary Inspirals
- Light scalar field constraints from gravitational-wave observations of compact binaries
- Stealth Bias in Gravitational-Wave Parameter Estimation
- Tidal acceleration of black holes and superradiance
- Waveforms of compact binary inspiral gravitational radiation in screened modified gravity
- Gravitational waves from eccentric extreme mass-ratio inspirals as probes of scalar fields
- Analytic Kludge Waveforms for Extreme Mass Ratio Inspirals of Charged Object around Kerr-Newman Black Hole
- Gravitational waves in massive gravity theories: waveforms, fluxes and constraints from extreme-mass-ratio mergers
- Gravitational waves and extra dimensions: a short review
- Gravitational wave from extreme mass-ratio inspirals as a probe of extra dimensions
- Model independent tests of the Kerr bound with extreme mass ratio inspirals
- Distinguishing black holes from horizonless objects through the excitation of resonances during inspiral
- Constraining the spin parameter of near-extremal black holes using LISA
- Gravitational waveforms from the quasicircular inspiral of compact binaries in massive Brans-Dicke theory
- Inspiral gravitational waveforms from compact binary systems in Horndeski gravity
- Detection of scalar fields by Extreme Mass Ratio Inspirals with a Kerr black hole
- Improved Constraints on Modified Gravity with Eccentric Gravitational Waves
- Black hole accretion discs and screened scalar hair
- Numerical simulations of black hole-neutron star mergers in scalar-tensor gravity
- Constraint on Brans-Dicke theory from intermediate/extreme mass ratio inspirals
- Tidal effects around higher-dimensional black holes
- Ultralight scalars and resonances in black-hole physics
- Gravitational self-force in scalar-tensor gravity
- Astrophysical black holes in screened modified gravity
- Constraining Horndeski theory with gravitational waves from coalescing binaries
- Impact of ringdown higher-order modes on black-hole mergers in dense environments: the scalar field case, detectability and parameter biases
- Astrophysical black holes as natural laboratories for fundamental physics and strong-field gravity
- Gravitational-wave constraints on scalar-tensor gravity from a neutron star and black-hole binary GW200115
- Probing fundamental physics with Extreme Mass Ratio Inspirals: a full Bayesian inference for scalar charge
- Testing gravity with Extreme-Mass-Ratio Inspirals
- Can we distinguish black holes with electric and magnetic charges from quasinormal modes?
- Simultaneous bounds on the gravitational dipole radiation and varying gravitational constant from compact binary inspirals
- Superradiant (In)stability, Greybody Radiation, and Quasinormal Modes of Rotating Black Holes in non-linear Maxwell f (R) Gravity
- Measuring violations of General Relativity from single gravitational wave detection by non-spinning binary systems: higher-order asymptotic analysis
- Numerical Relativity and High Energy Physics: Recent Developments
- Improved parametrized test of general relativity using the IMRPhenomX waveform family: Including higher harmonics and precession
- Testing alternative theories of gravity with space-based gravitational wave detectors
- Probing new fundamental fields with Extreme Mass Ratio Inspirals
- Template bank to search for exotic gravitational wave signals from astrophysical compact binaries
- Resonant excitation of eccentricity in spherical extreme-mass-ratio inspirals
- A Black-Hole Primer: Particles, Waves, Critical Phenomena and Superradiant Instabilities
- Einstein-Klein-Gordon system via Cauchy-characteristic evolution: Computation of memory and ringdown tail
- Where is the ringdown? Reconstructing quasinormal modes from dispersive waves
- Gravitational waveforms from the inspiral of compact binaries in the Brans-Dicke theory in an expanding Universe
- Laser interferometer response to scalar massive gravitational waves
- Extreme mass ratio inspirals around topological stars
- Conservative Dynamics of Relativistic Binaries Beyond Einstein Gravity
- Analytical model of precessing binaries using post-Newtonian theory in the extreme mass-ratio limit I: General Formalism
- Tests of general relativity at the fourth post-Newtonian order
- Gravitational radiation from compact binaries in scalar-tensor gravity
- Gravitational wave propagation beyond general relativity: waveform distortions and echoes
- Scalarization and superradiant instability of black hole induced by dark matter halo in the scalar-tensor theory of gravity
- Gravitational waves from equatorially eccentric extreme mass ratio inspirals around swirling Kerr black holes
- Generic effective sources for first-order in mass-ratio gravitational self-force calculations in Schwarzschild spacetime
- Extreme mass-ratio inspirals as probes of scalar fields: eccentric equatorial orbits around Kerr black holes
- Hawking area law in quantum gravity
- Resonances, black hole mimickers and the greenhouse effect: consequences for gravitational-wave physics
- Spacetime of rotating black holes surrounded by massive scalar charges