Generic EFT-motivated beyond General Relativity gravitational wave tests and their curvature dependence: from observation to interpretation
arXiv:2507.17143 · doi:10.1103/bl9q-1q3r
Abstract
We present a "dictionary" to expedite the identification of potential deviations in gravitational waveforms from those predicted by General Relativity (GR) during the inspiral phase of black hole binaries. Assuming deviations from GR can be described by a local Effective Field Theory (EFT) formulated in terms of curvature operators (and possibly additional scalar fields), this dictionary characterizes how deviations scale with the masses of the binary components and identifies the leading order Post-Newtonian corrections in generic theories constructed within the EFT framework. By establishing a direct connection between observations and candidate theories beyond GR, this dictionary also aids in distinguishing genuine physical effects from systematic errors. These results can be readily incorporated into essentially all existing tests for the inspiral regime and, in particular, facilitate a more efficient combination of data from multiple events.
v2: References added, minor updates, published in Phys. Rev. D
References in corpus (63)
- Tests of general relativity with GW150914
- Testing General Relativity with Present and Future Astrophysical Observations
- Relativistic tidal properties of neutron stars
- Tests of General Relativity with the Binary Black Hole Signals from the LIGO-Virgo Catalog GWTC-1
- Tests of General Relativity with Binary Black Holes from the second LIGO-Virgo Gravitational-Wave Transient Catalog
- Relativistic theory of tidal Love numbers
- An Effective Field Theory of Gravity for Extended Objects
- Chern-Simons Modified General Relativity
- Tests of General Relativity with GW170817
- Black hole hair in generalized scalar-tensor gravity
- Gravitational Wave Tests of General Relativity with Ground-Based Detectors and Pulsar Timing Arrays
- The Effective Field Theorist's Approach to Gravitational Dynamics
- Testing strong-field gravity with tidal Love numbers
- Neutron-star mergers in scalar-tensor theories of gravity
- Effective Field Theories of Post-Newtonian Gravity: A comprehensive review
- Modified theories of Gravity: Why, How and What?
- TIGER: A data analysis pipeline for testing the strong-field dynamics of general relativity with gravitational wave signals from coalescing compact binaries
- Black hole stereotyping: Induced gravito-static polarization
- Post-Newtonian, Quasi-Circular Binary Inspirals in Quadratic Modified Gravity
- Einsteinian cubic gravity
- An effective formalism for testing extensions to General Relativity with gravitational waves
- Leading higher-derivative corrections to Kerr geometry
- Effective field theory methods to model compact binaries
- Absorption Effects due to Spin in the Worldline Approach to Black Hole Dynamics
- Evolution of Einstein-scalar-Gauss-Bonnet gravity using a modified harmonic formulation
- Well-posed formulation of Lovelock and Horndeski theories
- Non-Relativistic Gravitation: From Newton to Einstein and Back
- Parameterized Post-Einsteinian Gravitational Waveforms in Various Modified Theories of Gravity
- Gravitational Waves from Quasi-Circular Black Hole Binaries in Dynamical Chern-Simons Gravity
- The Invar tensor package: Differential invariants of Riemann
- Post-Newtonian dynamics and black hole thermodynamics in Einstein-scalar-Gauss-Bonnet gravity
- Post-Newtonian Gravitational and Scalar Waves in Scalar-Gauss-Bonnet Gravity
- From amplitudes to gravitational radiation with cubic interactions and tidal effects
- Frequency-Dependent Responses in 3rd Generation Gravitational-Wave Detectors
- The Speed of Gravity
- Tests of General Relativity with Gravitational-Wave Observations using a Flexible--Theory-Independent Method
- Black-hole ringdown as a probe of higher-curvature gravity theories
- Effective Field Theory of Gravity to All Orders
- Causality in Curved Spacetimes: The Speed of Light & Gravity
- On higher-derivative effects on the gravitational potential and particle bending
- Systematic bias on parameterized tests of general relativity due to neglect of orbital eccentricity
- Enhancing modified gravity detection from gravitational-wave observations using the Parametrized ringdown spin expansion coefficients formalism
- Higher-derivative operators and effective field theory for general scalar-tensor theories
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Causal Effective Field Theories
- Dipolar tidal effects in scalar-tensor theories
- Are Parametrized Tests of General Relativity with Gravitational Waves Robust to Unknown Higher Post-Newtonian Order Effects?
- Modelling self-consistently beyond General Relativity
- Scattering Amplitudes, Black Holes and Leading Singularities in Cubic Theories of Gravity
- Polarization modes of gravitational waves in Quadratic Gravity
- Effective field theory for gravitational radiation in scalar-tensor gravity
- Parametrized tests of post-Newtonian theory using principal component analysis
- Parametrizing and constraining scalar corrections to general relativity
- Nonlinear Dynamics of Quadratic Gravity in Spherical Symmetry
- Extracting the three- and four-graviton vertices from binary pulsars and coalescing binaries
- Dipolar tidal effects in gravitational waves from scalarized black hole binary inspirals in quadratic gravity
- Binary systems in massive scalar-tensor theories: Next-to-leading order gravitational wave phase from effective field theory
- SCoRe: A New Framework to Study Unmodeled Physics from Gravitational Wave Data
- Tidal effects in gravitational waves from neutron stars in scalar-tensor theories of gravity
- Post-Newtonian Dynamics of Spinning Black Hole Binaries in Einstein-Scalar-Gauss-Bonnet Gravity
- The curvature dependence of gravitational-wave tests of General Relativity
- Conservative Dynamics of Relativistic Binaries Beyond Einstein Gravity
- Effects of Short-Distance Modifications to General Relativity in Spinning Binary Systems
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- Dynamical Tidal Response of Non-rotating Black Holes: Connecting the MST Formalism and Worldline EFT
- Ten years of extreme gravity tests of general theory of relativity with gravitational-wave observations
- Quasinormal modes and their excitation beyond general relativity. II: isospectrality loss in gravitational waveforms
- Gravitational radiations from periodic orbits around a black hole in the effective field theory extension of general relativity
- Tidal effects in the total flux and waveform in massless scalar-tensor theories to, respectively, relative 2PN and 1.5PN orders