Constraining the evolutionary history of Newton's constant with gravitational wave observations
arXiv:0912.2724 · doi:10.1103/PhysRevD.81.064018
Abstract
Space-borne gravitational wave detectors, such as the proposed Laser Interferometer Space Antenna, are expected to observe black hole coalescences to high redshift and with large signal-to-noise ratios, rendering their gravitational waves ideal probes of fundamental physics. The promotion of Newton's constant to a time-function introduces modifications to the binary's binding energy and the gravitational wave luminosity, leading to corrections in the chirping frequency. Such corrections propagate into the response function and, given a gravitational wave observation, they allow for constraints on the first time-derivative of Newton's constant at the time of merger. We find that space-borne detectors could indeed place interesting constraints on this quantity as a function of sky position and redshift, providing a {\emph{constraint map}} over the entire range of redshifts where binary black hole mergers are expected to occur. A LISA observation of an equal-mass inspiral event with total redshifted mass of 10^5 solar masses for three years should be able to measure at the time of merger to better than 10^(-11)/yr.
11 pages, 2 figures, replaced with version accepted for publication in Phys. Rev. D.
References in corpus (30)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA
- Fundamental Theoretical Bias in Gravitational Wave Astrophysics and the Parameterized Post-Einsteinian Framework
- Model Waveform Accuracy Standards for Gravitational Wave Data Analysis
- Toward faithful templates for non-spinning binary black holes using the effective-one-body approach
- Ultra-high precision cosmology from gravitational waves
- 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 Self Force in a Schwarzschild Background and the Effective One Body Formalism
- Post-Circular Expansion of Eccentric Binary Inspirals: Fourier-Domain Waveforms in the Stationary Phase Approximation
- Comparing Effective-One-Body gravitational waveforms to accurate numerical data
- The Barbero-Immirzi Parameter as a Scalar Field: K-Inflation from Loop Quantum Gravity?
- Accurate Effective-One-Body waveforms of inspiralling and coalescing black-hole binaries
- High-accuracy numerical simulation of black-hole binaries: Computation of the gravitational-wave energy flux and comparisons with post-Newtonian approximants
- Faithful Effective-One-Body waveforms of equal-mass coalescing black-hole binaries
- Binary black hole merger in the extreme mass ratio limit
- A gravitational-wave probe of effective quantum gravity
- Interaction of the Barbero--Immirzi Field with Matter and Pseudo-Scalar Perturbations
- Binary black hole late inspiral: Simulations for gravitational wave observations
- Binary black holes' effects on electromagnetic fields
- Bounding the mass of the graviton with gravitational waves: Effect of spin precessions in massive black hole binaries
- Bounding the mass of the graviton with gravitational waves: Effect of higher harmonics in gravitational waveform templates
- Final spin of a coalescing black-hole binary: an Effective-One-Body approach
- Perturbed disks get shocked. Binary black hole merger effects on accretion disks
- Constraining a possible time-variation of the gravitational constant through "gravitochemical heating" of neutron stars
- Constraints on the Size of Extra Dimensions from the Orbital Evolution of Black-Hole X-Ray Binaries
- Use and Abuse of the Model Waveform Accuracy Standards
- Post-merger electromagnetic emissions from disks perturbed by binary black holes
Cited by in corpus (60)
- Varying constants, Gravitation and Cosmology
- 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
- Testing General Relativity with Low-Frequency, Space-Based Gravitational-Wave Detectors
- Non-Spinning Black Holes in Alternative Theories of Gravity
- Towards a generic test of the strong field dynamics of general relativity using compact binary coalescence
- Extreme Gravity Tests with Gravitational Waves from Compact Binary Coalescences: (I) Inspiral-Merger
- Gravitational Wave Tests of General Relativity with the Parameterized Post-Einsteinian Framework
- Black Hole Based Tests of General Relativity
- Imprint of Accretion Disk-Induced Migration on Gravitational Waves from Extreme Mass Ratio Inspirals
- Gravitational Waves from Quasicircular Extreme Mass-Ratio Inspirals as Probes of Scalar-Tensor Theories
- eLISA: Astrophysics and cosmology in the millihertz regime
- Theoretical Physics Implications of Gravitational Wave Observation with Future Detectors
- Probing Fundamental Physics with Gravitational Waves: The Next Generation
- Parameterized Post-Einsteinian Gravitational Waveforms in Various Modified Theories of Gravity
- Improved BBN Constraints on the Variation of the Gravitational Constant
- The peculiar acceleration of stellar-origin black hole binaries: measurement and biases with LISA
- Gravitational Wave Tests of Strong Field General Relativity with Binary Inspirals: Realistic Injections and Optimal Model Selection
- Probing the size of extra dimension with gravitational wave astronomy
- Scientific Potential of DECIGO Pathfinder and Testing GR with Space-Borne Gravitational Wave Interferometers
- Binary Pulsar Constraints on the Parameterized post-Einsteinian Framework
- Constraining the time variation of Newton's constant with gravitational-wave standard sirens and supernovae
- Parameterized and inspiral-merger-ringdown consistency tests of gravity with multi-band gravitational wave observations
- Can scale-dependent cosmology alleviate the tension?
- Implications of the Gravitational Wave Event GW150914
- Towards a generic test of the strong field dynamics of general relativity using compact binary coalescence: Further investigations
- Linear Stability Analysis of Dynamical Quadratic Gravity
- Testing Gravity with Gravitational Waves from Binary Black Hole Mergers: Contributions from Amplitude Corrections
- Black string corrections in variable tension braneworld scenarios
- Stealth Bias in Gravitational-Wave Parameter Estimation
- Tests of general relativity with stellar-mass black hole binaries observed by LISA
- Giving Cosmic Redshift Drift a Whirl
- Yoga Dark Energy: Natural Relaxation and Other Dark Implications of a Supersymmetric Gravity Sector
- Waltzing binaries: Probing line-of-sight acceleration of merging compact objects with gravitational waves
- Constraining the braneworld with gravitational wave observations
- Axion Homeopathy: Screening Dilaton Interactions
- Frequency-domain waveform approximants capturing Doppler shifts
- Cosmological constant problem: deflation during inflation
- Testing general relativity with TianQin: the prospect of using the inspiral signals of black hole binaries
- Testing General Relativity with Black Hole-Pulsar Binaries
- Effect of transitions in the Planck mass during inflation on primordial power spectra
- Gravitational wave diagnosis of a circumbinary disk
- Constraining the evolution of Newton's constant with slow inspirals observed from spaceborne gravitational-wave detectors
- Neural post-Einsteinian framework for efficient theory-agnostic tests of general relativity with gravitational waves
- Parameter Estimation for Tests of General Relativity with the Astrophysical Stochastic Gravitational Wave Background
- Parameterized and Consistency Tests of Gravity with Gravitational Waves: Current and Future
- Two-branes with variable tension model and the effective Newtonian constant
- Fundamental Physics and Cosmology with TianQin
- Muffled Murmurs: Environmental effects in the LISA stochastic signal from stellar-mass black hole binaries
- Distinguish the environmental effects and modified theory of gravity with multiple massive black-hole binaries
- Constraining Models of Dark Energy
- Probing dynamical spacetimes with gravitational waves
- Probing Fundamental Physics with Gravitational Waves
- A Parametrized Test of General Relativity for LISA Massive Black Hole Binary Inspirals
- Space-based Gravitational Wave Observatories
- Gravitational Waves from Compact Binaries as Probes of the Universe
- Neural Post-Einsteinian Test of General Relativity with the Third Gravitational-Wave Transient Catalog
- Constraining scalar-tensor theories from higher harmonics with GW230529
- When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals
- Constraining runaway dilaton models using joint gravitational-wave and electromagnetic observations