Five-Loop Static Contribution to the Gravitational Interaction Potential of Two Point Masses
arXiv:1902.11180 · doi:10.1016/j.physletb.2019.135100
Abstract
We compute the static contribution to the gravitational interaction potential of two point masses in the velocity-independent five-loop (and 5th post-Newtonian) approximation to the harmonic coordinates effective action in a direct calculation. The computation is performed using effective field methods based on Feynman diagrams in momentum-space in space dimensions. We also reproduce the previous results including the 4th post-Newtonian order.
15 pages, 4 figures. Journal version plus corrected typographical errors in formula for master integral M_{72}
References in corpus (20)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Scattering Amplitudes and the Conservative Hamiltonian for Binary Systems at Third Post-Minkowskian Order
- Gravitational scattering, post-Minkowskian approximation and Effective One-Body theory
- Higher-order spin effects in the dynamics of compact binaries I. Equations of motion
- Feynman Integral Evaluation by a Sector decomposiTion Approach (FIESTA)
- The Hyperfine Einstein-Infeld-Hoffmann Potential
- Energetics of two-body Hamiltonians in post-Minkowskian gravity
- Gravitational spin Hamiltonians from the S matrix
- Effective field theory calculation of second post-Newtonian binary dynamics
- Energy and periastron advance of compact binaries on circular orbits at the fourth post-Newtonian order
- Next-to-leading order gravitational spin-orbit coupling in an effective field theory approach
- Static two-body potential at fifth post-Newtonian order
- Fermionic contributions to the three-loop static potential
- The 3-Loop Pure Singlet Heavy Flavor Contributions to the Structure Function and the Anomalous Dimension
- 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
- Gravitational scattering of two black holes at the fourth post-Newtonian approximation
- Canonical Formulation of Spin in General Relativity
- Analytic three-loop static potential
- Spin Effects in Long Range Gravitational Scattering
Cited by in corpus (72)
- Black Hole Binary Dynamics from the Double Copy and Effective Theory
- 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
- Classical black hole scattering from a worldline quantum field theory
- Scattering Amplitudes and Conservative Binary Dynamics at
- From Boundary Data to Bound States
- Spinning Black Hole Binary Dynamics, Scattering Amplitudes and Effective Field Theory
- Scattering Amplitudes, the Tail Effect, and Conservative Binary Dynamics at
- Classical Gravitational Bremsstrahlung from a Worldline Quantum Field Theory
- Dynamics of Binary Systems to Fourth Post-Minkowskian Order from the Effective Field Theory Approach
- On-shell heavy particle effective theories
- Conservative Dynamics of Binary Systems at Fourth Post-Minkowskian Order in the Large-eccentricity Expansion
- Gravitational Bremsstrahlung from Reverse Unitarity
- Novel approach to binary dynamics: application to the fifth post-Newtonian level
- Conservative dynamics of binary systems to fourth Post-Newtonian order in the EFT approach II: Renormalized Lagrangian
- Sixth post-Newtonian local-in-time dynamics of binary systems
- Conservative dynamics of binary systems to fourth Post-Newtonian order in the EFT approach I: Regularized Lagrangian
- Conservative Tidal Effects in Compact Binary Systems to Next-to-Leading Post-Minkowskian Order
- 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
- Tidal Effects in the Post-Minkowskian Expansion
- Sixth post-Newtonian nonlocal-in-time dynamics of binary systems
- Classical Gravitational Scattering at from Feynman Diagrams
- Eikonal phase matrix, deflection angle and time delay in effective field theories of gravity
- One-loop Gravitational Bremsstrahlung and Waveforms from a Heavy-Mass Effective Field Theory
- Leading Nonlinear Tidal Effects and Scattering Amplitudes
- Radiation-Reaction in the Effective Field Theory Approach to Post-Minkowskian Dynamics
- Testing binary dynamics in gravity at the sixth post-Newtonian level
- From amplitudes to gravitational radiation with cubic interactions and tidal effects
- 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
- The 2PM Hamiltonian for binary Kerr to quartic in spin
- Conservative Binary Dynamics with a Spinning Black Hole at from Scattering Amplitudes
- Mining the Geodesic Equation for Scattering Data
- Resummed spinning waveforms from five-point amplitudes
- Gravitational spin-orbit coupling through third-subleading post-Newtonian order: from first-order self-force to arbitrary mass ratios
- Gravitational radiation from inspiralling compact objects: Spin-spin effects completed at the next-to-leading post-Newtonian order
- On higher-derivative effects on the gravitational potential and particle bending
- The fifth-order post-Newtonian Hamiltonian dynamics of two-body systems from an effective field theory approach
- NLO gravitational spin-orbit coupling at order
- Hereditary Terms at Next-To-Leading Order in Two-Body Gravitational Dynamics
- Gravitational spin-orbit and aligned spin-spin couplings through third-subleading post-Newtonian orders
- NNNLO gravitational quadratic-in-spin interactions at the quartic order in G
- The 6th Post-Newtonian Potential Terms at
- Quasi-circular inspirals and plunges from non-spinning effective-one-body Hamiltonians with gravitational self-force information
- NLO gravitational quartic-in-spin interaction
- Scalar QED as a toy model for higher-order effects in classical gravitational scattering
- Gravitational Quadratic-in-Spin Hamiltonian at NNNLO in the post-Newtonian framework
- Fourth post-Newtonian effective-one-body Hamiltonians with generic spins
- Gravitational Scattering and Beyond from Extreme Mass Ratio Effective Field Theory
- Three-Body Effective Potential in General Relativity at Second Post-Minkowskian Order and Resulting Post-Newtonian Contributions
- Prospects of detecting deviations to Kerr geometry with radiation reaction effects in EMRIs
- Near and far zone in two-body dynamics: an effective field theory perspective
- Efficient resummation of high post-Newtonian contributions to the binding energy
- Binary Dynamics from Worldline QFT for Scalar-QED
- The SAGEX Review on Scattering Amplitudes, Chapter 4: Multi-loop Feynman Integrals
- Radiative Classical Gravitational Observables at from Scattering Amplitudes
- Scattering Amplitudes and N-Body Post-Minkowskian Hamiltonians in General Relativity and Beyond
- The H-graph with equal masses in terms of multiple polylogarithms
- Tensor-Multi-Scalar Gravity: Equations of Motion to 2.5 post-Newtonian Order
- A scattering amplitudes approach to hard thermal loops
- Spin supplementary condition in quantum field theory: covariant SSC and physical state projection
- Detweiler's redshift invariant for extended bodies orbiting a Schwarzschild black hole
- The effect of screening mechanisms on black hole binary inspiral waveforms
- Higher-order tails and RG flows due to scattering of gravitational radiation from binary inspirals
- Waveforms from Amplitudes
- The gravitational Compton amplitude from flat and curved spacetimes at second post-Minkowskian order
- Machine Learning Post-Minkowskian Integrals
- Scrambling and Entangling Spinning Particles
- Classical gravitational scattering from a gauge-invariant double copy
- Gravitational cubic-in-spin interaction at the next-to-leading post-Newtonian order
- Calculating the static gravitational two-body potential to fifth post-Newtonian order with Feynman diagrams