Effective field theory methods to model compact binaries
arXiv:1309.3474 · doi:10.1088/0264-9381/31/4/043001
Abstract
In this short review we present a self-contained exposition of the effective field theory method approach to model the dynamics of gravitationally bound compact binary systems within the post-Newtonian approximation to General Relativity. Applications of this approach to the conservative sector, as well as to the radiation emission by the binary system are discussed in their salient features. Most important results are discussed in a pedagogical way, as in-depths and details can be found in the referenced papers.
37 pages, 22 figures
References in corpus (17)
- Interferometer design of the KAGRA gravitational wave detector
- Relativistic theory of tidal Love numbers
- Classical Space-Times from the S Matrix
- Hamiltonian of two spinning compact bodies with next-to-leading order gravitational spin-orbit coupling
- The Hyperfine Einstein-Infeld-Hoffmann Potential
- High-Order Post-Newtonian Fit of the Gravitational Self-Force for Circular Orbits in the Schwarzschild Geometry
- Analytical determination of the two-body gravitational interaction potential at the 4th post-Newtonian approximation
- Next-to-next-to-leading order spin-orbit effects in the near-zone metric and precession equations of compact binaries
- Effective field theory calculation of second post-Newtonian binary dynamics
- Next-to-leading order gravitational spin-orbit coupling in an effective field theory approach
- Search for Gravitational Waves from Binary Black Hole Inspiral, Merger and Ringdown in LIGO-Virgo Data from 2009-2010
- The dynamics of the gravitational two-body problem at fourth post-Newtonian order and at quadratic order in the Newton constant
- Classical Effective Field Theory and Caged Black Holes
- TASI Lectures on Effective Field Theories
- Les Houches Lectures on Effective Field Theories and Gravitational Radiation
- The n-body problem in General Relativity up to the second post-Newtonian order from perturbative field theory
- Classical 3-loop 2-body diagrams
Cited by in corpus (76)
- Black holes, gravitational waves and fundamental physics: a roadmap
- Amplitudes, Observables, and Classical Scattering
- The Effective Field Theorist's Approach to Gravitational Dynamics
- Probing Ultralight Bosons with Binary Black Holes
- Post-Minkowskian Effective Field Theory for Conservative Binary Dynamics
- Conservative Dynamics of Binary Systems to Third Post-Minkowskian Order from the Effective Field Theory Approach
- Effective Field Theories of Post-Newtonian Gravity: A comprehensive review
- Classical black hole scattering from a worldline quantum field theory
- From Boundary Data to Bound States
- Reconstructing the neutron-star equation of state with gravitational-wave detectors from a realistic population of inspiralling binary neutron stars
- Classical Gravitational Bremsstrahlung from a Worldline Quantum Field Theory
- Dynamics of Binary Systems to Fourth Post-Minkowskian Order from the Effective Field Theory Approach
- Conservative Dynamics of Binary Systems at Fourth Post-Minkowskian Order in the Large-eccentricity Expansion
- Spinning-black-hole scattering and the test-black-hole limit at second post-Minkowskian order
- Conservative dynamics of binary systems to fourth Post-Newtonian order in the EFT approach II: Renormalized Lagrangian
- Effective field theory approach to the gravitational two-body dynamics, at fourth post-Newtonian order and quintic in the Newton constant
- The tail effect in gravitational radiation-reaction: time non-locality and renormalization group evolution
- Conservative Tidal Effects in Compact Binary Systems to Next-to-Leading Post-Minkowskian Order
- Conservative dynamics of binary systems to fourth Post-Newtonian order in the EFT approach I: Regularized Lagrangian
- Gravitational Bremsstrahlung in the Post-Minkowskian Effective Field Theory
- Spin Effects in the Effective Field Theory Approach to Post-Minkowskian Conservative Dynamics
- Ambiguity-Free Completion of the Equations of Motion of Compact Binary Systems at the Fourth Post-Newtonian Order
- Static two-body potential at fifth post-Newtonian order
- Interpreting Binary Neutron Star Mergers: Describing the Binary Neutron Star Dynamics, Modelling Gravitational Waveforms, and Analyzing Detections
- Eikonal phase matrix, deflection angle and time delay in effective field theories of gravity
- Radiation-Reaction in the Effective Field Theory Approach to Post-Minkowskian Dynamics
- Compton Black-Hole Scattering for
- The Science of the Einstein Telescope
- Center-of-Mass Equations of Motion and Conserved Integrals of Compact Binary Systems at the Fourth Post-Newtonian Order
- The Overlap of Numerical Relativity, Perturbation Theory and Post-Newtonian Theory in the Binary Black Hole Problem
- On the Apparent Ambiguities in the Post-Newtonian Expansion for Binary Systems
- Spin effects on neutron star fundamental-mode dynamical tides: phenomenology and comparison to numerical simulations
- Radiated momentum in the Post-Minkowskian worldline approach via reverse unitarity
- First Law of Mechanics for Compact Binaries on Eccentric Orbits
- Gravitational radiation from inspiralling compact objects: Spin-spin effects completed at the next-to-leading post-Newtonian order
- Radiation reaction for spinning bodies in effective field theory II: Spin-spin effects
- Radiation reaction for spinning bodies in effective field theory I: Spin-orbit effects
- Hereditary Terms at Next-To-Leading Order in Two-Body Gravitational Dynamics
- From Boundary Data to Bound States III: Radiative Effects
- The SXS Collaboration's third catalog of binary black hole simulations
- Strings, extended objects, and the classical double copy
- Gravitational Bremsstrahlung with tidal effects in the post-Minkowskian expansion
- Logarithmic tail contributions to the energy function of circular compact binaries
- Effective field theory for gravitational radiation in scalar-tensor gravity
- Second post-Newtonian order radiative dynamics of inspiralling compact binaries in the Effective Field Theory approach
- First Law of Compact Binary Mechanics with Gravitational-Wave Tails
- Gravitational-wave tails of memory
- Relativistic effective action of dynamical gravitomagnetic tides for slowly rotating neutron stars
- The Lamb shift and the gravitational binding energy for binary black holes
- Gravitational Bound Waveforms from Amplitudes
- Spin-orbit effects for compact binaries in scalar-tensor gravity
- Near and far zone in two-body dynamics: an effective field theory perspective
- Efficient resummation of high post-Newtonian contributions to the binding energy
- Observables from classical black hole scattering in Scalar-Tensor theory of gravity from worldline quantum field theory
- Post-Newtonian templates for gravitational waves from compact binary inspirals
- Next-to-leading order spin-orbit effects in the equations of motion, energy loss and phase evolution of binaries of compact bodies in the effective field theory approach
- Analytic approximations, perturbation theory, effective field theory methods and their applications
- Detectability of gravitational higher order modes in the third-generation era
- The spinning self-force EFT: 1SF waveform recursion relation and Compton scattering
- Generic EFT-motivated beyond General Relativity gravitational wave tests and their curvature dependence: from observation to interpretation
- Novel Screening with Two Bodies: Summing the ladder in disformal scalar-tensor theories
- Spin precession as a new window into disformal scalar fields
- Testing the Boundary-to-Bound Correspondence with Numerical Relativity
- Post-Newtonian Dynamics of Spinning Black Hole Binaries in Einstein-Scalar-Gauss-Bonnet Gravity
- Binary dynamics to second post-Newtonian order in scalar-tensor and Einstein-scalar-Gauss-Bonnet gravity from effective field theory
- Machine Learning Post-Minkowskian Integrals
- Scattering of uncharged particles in the field of two extremely charged black holes
- The general relativistic two body problem
- -matrix approach to general gravity and beyond
- Effects of Short-Distance Modifications to General Relativity in Spinning Binary Systems
- Multipolar invariants and the eccentricity enhancement function parametrization of gravitational radiation
- Quantum gravity phenomenology from the perspective of quantum general relativity and quadratic gravity
- Quantum point particle approximation of spinning black holes and compact stars
- First-post-Newtonian generation of gravitational waves in Einstein-Cartan theory
- Gravitational Wave Signals from Finite Size Effects in Spinning Binary Inspirals Including Parity Violating Constituents
- Calculating the static gravitational two-body potential to fifth post-Newtonian order with Feynman diagrams