Hereditary Terms at Next-To-Leading Order in Two-Body Gravitational Dynamics
arXiv:1907.02869 · doi:10.1103/PhysRevD.101.064033
Abstract
In the context of the two-body problem in General Relativity, hereditary terms in the long range gravitational field depend on the history rather than the instantaneous state of the source at retarded time. We compute the next-to leading effects of such hereditary terms, that comprise tail and memory, on the two-body dynamics, within effective field theory methods, including both dissipative and conservative effects. The former confirm known results at 2.5 post-Newtonian order with respect to the leading order in the luminosity function; the conservative part is a new result and is an unavoidable ingredient for a derivation of the conservative two-body dynamics at fifth post-Newtonian order.
24 pages, 1 figure; footnote added at page 5
References in corpus (24)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- Laser Interferometer Space Antenna
- Tidal Love numbers of neutron stars
- Relativistic theory of tidal Love numbers
- Scattering Amplitudes and the Conservative Hamiltonian for Binary Systems at Third Post-Minkowskian Order
- Gravitational scattering, post-Minkowskian approximation and Effective One-Body theory
- The Zero-Bin and Mode Factorization in Quantum Field Theory
- No-hair theorem for Black Holes in Astrophysical Environments
- Fourth post-Newtonian effective one-body dynamics
- High-Order Post-Newtonian Fit of the Gravitational Self-Force for Circular Orbits in the Schwarzschild Geometry
- Conservative dynamics of binary systems to fourth Post-Newtonian order in the EFT approach II: Renormalized Lagrangian
- Conservative dynamics of binary systems to fourth Post-Newtonian order in the EFT approach I: Regularized Lagrangian
- Precession effect of the gravitational self-force in a Schwarzschild spacetime and the effective one-body formalism
- Static two-body potential at fifth post-Newtonian order
- Cubic order spin effects in the dynamics and gravitational wave energy flux of compact object binaries
- Relativistic Closed-Form Hamiltonian for Many-Body Gravitating Systems in the Post-Minkowskian Approximation
- The dynamics of the gravitational two-body problem at fourth post-Newtonian order and at quadratic order in the Newton constant
- Non-Relativistic Gravitation: From Newton to Einstein and Back
- Five-Loop Static Contribution to the Gravitational Interaction Potential of Two Point Masses
- Leading order finite size effects with spins for inspiralling compact binaries
- Spin induced multipole moments for the gravitational wave flux from binary inspirals to third Post-Newtonian order
- Logarithmic tail contributions to the energy function of circular compact binaries
Cited by in corpus (38)
- Black Hole Binary Dynamics from the Double Copy and Effective Theory
- Post-Minkowskian Effective Field Theory for Conservative Binary Dynamics
- Scattering Amplitudes and Conservative Binary Dynamics at
- Classical and quantum scattering in post-Minkowskian gravity
- Scattering Amplitudes, the Tail Effect, and Conservative Binary Dynamics at
- 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
- Novel approach to binary dynamics: application to the fifth post-Newtonian level
- Sixth post-Newtonian local-in-time dynamics of binary systems
- Binary dynamics at the fifth and fifth-and-a-half post-Newtonian orders
- Spin Effects in the Effective Field Theory Approach to Post-Minkowskian Conservative Dynamics
- Radiative contributions to gravitational scattering
- Radiation-Reaction in the Effective Field Theory Approach to Post-Minkowskian Dynamics
- Testing binary dynamics in gravity at the sixth post-Newtonian level
- The fifth-order post-Newtonian Hamiltonian dynamics of two-body systems from an effective field theory approach: potential contributions
- Fourth post-Newtonian Hamiltonian dynamics of two-body systems from an effective field theory approach
- Gravitational radiation from inspiralling compact objects: Spin effects to fourth Post-Newtonian order
- Gravitational Wave Flux and Quadrupole Modes from Quasi-Circular Non-Spinning Compact Binaries to the Fourth Post-Newtonian Order
- The fifth-order post-Newtonian Hamiltonian dynamics of two-body systems from an effective field theory approach
- NNNLO gravitational quadratic-in-spin interactions at the quartic order in G
- From Boundary Data to Bound States III: Radiative Effects
- The current-type quadrupole moment and gravitational-wave mode of compact binary systems at the third post-Newtonian order
- Logarithmic tail contributions to the energy function of circular compact binaries
- NLO gravitational quartic-in-spin interaction
- Tail contributions to gravitational conservative dynamics
- Near and far zone in two-body dynamics: an effective field theory perspective
- Higher-order tail contributions to the energy and angular momentum fluxes in a two-body scattering process
- Efficient resummation of high post-Newtonian contributions to the binding energy
- Large Gauge Effects and the Structure of Amplitudes
- Gravitational radiation contributions to the two-body scattering angle
- Radiation Reaction for Non-Spinning Bodies at 4.5PN in the Effective Field Theory Approach
- Gravitational Multipole Renormalization
- Conservative (failed)-tail effects at the fifth post-Newtonian order
- Higher-order tails and RG flows due to scattering of gravitational radiation from binary inspirals
- Waveforms from Amplitudes
- Machine Learning Post-Minkowskian Integrals
- Proof of the Classical Soft Graviton Theorem in D=4
- Tests of general relativity at the fourth post-Newtonian order