Gravitational Quadratic-in-Spin Hamiltonian at NNNLO in the post-Newtonian framework
arXiv:2210.09176 · doi:10.1007/JHEP07(2023)128
Abstract
We present the result of the quadratic-in-spin interaction Hamiltonian for binary systems of rotating compact objects with generic spins, up to NNNLO corrections within the post-Newtonian expansion. The calculation is performed by employing the effective field theory diagrammatic approach, and it involves Feynman integrals up to three loops, evaluated within the dimensional regularization scheme. The gauge-invariant binding energy and the scattering angle, in special kinematic regimes and spin configurations, are explicitly derived. The results extend our earlier study on the spin-orbit interaction effects.
33 pages. arXiv admin note: text overlap with arXiv:2209.00611
References in corpus (28)
- Advanced LIGO
- Higher-order spin effects in the dynamics of compact binaries I. Equations of motion
- From Boundary Data to Bound States
- From Boundary Data to Bound States II: Scattering Angle to Dynamical Invariants (with Twist)
- Spinning Black Holes Fall in Love
- Spin Effects in the Effective Field Theory Approach to Post-Minkowskian Conservative Dynamics
- The Science Case for LIGO-India
- Static two-body potential at fifth post-Newtonian order
- Quadratic-in-Spin Hamiltonian at from Scattering Amplitudes
- Leading order finite size effects with spins for inspiralling compact binaries
- Testing binary dynamics in gravity at the sixth post-Newtonian level
- Equivalence of ADM Hamiltonian and Effective Field Theory approaches at next-to-next-to-leading order spin1-spin2 coupling of binary inspirals
- Binary Dynamics Through the Fifth Power of Spin at
- Tidal deformation of a slowly rotating black hole
- A worldsheet for Kerr
- The fifth-order post-Newtonian Hamiltonian dynamics of two-body systems from an effective field theory approach: potential contributions
- Classical gravitational spinning-spinless scattering at
- Vanishing of black hole tidal Love numbers from scattering amplitudes
- Linear Response, Hamiltonian and Radiative Spinning Two-Body Dynamics
- The fifth-order post-Newtonian Hamiltonian dynamics of two-body systems from an effective field theory approach
- NLO gravitational spin-orbit coupling at order
- NNNLO gravitational quadratic-in-spin interactions at the quartic order in G
- Gravitational spin-orbit and aligned spin-spin couplings through third-subleading post-Newtonian orders
- The 6th Post-Newtonian Potential Terms at
- Gravitational Spin-Orbit Hamiltonian at NNNLO in the post-Newtonian framework
- NLO Quadratic-in-Spin Interactions for Generic Compact Binaries
- NLO Spin-Orbit Interaction via the EFT of Spinning Gravitating Objects
- Efficient resummation of high post-Newtonian contributions to the binding energy
Cited by in corpus (8)
- Laying the foundation of the effective-one-body waveform models SEOBNRv5: improved accuracy and efficiency for spinning non-precessing binary black holes
- Worldline effective field theory of inspiralling black hole binaries in presence of dark photon and axionic dark matter
- Renormalizing Love: tidal effects at the third post-Newtonian order
- Prospects of detecting deviations to Kerr geometry with radiation reaction effects in EMRIs
- Gravitoelectric dynamical tides at second post-Newtonian order
- From the EFT of Spinning Gravitating Objects to Poincaré and Gauge Invariance at the 4.5PN Precision Frontier
- Massive twistor worldline in electromagnetic fields
- Dynamical Love Numbers for Black Holes and Beyond from Shell Effective Field Theory