We present a gravitoelectric quadrupolar dynamical tidal-interaction Hamiltonian for a compact binary system, that is valid to second order in the post-Newtonian expansion. Our derivation uses the diagrammatic effective field theory approach, and involves Feynman integrals up to two loops, evaluated with the dimensional regularization scheme. We also derive the effective Hamiltonian for adiabatic tides, obtained by taking the appropriate limit of the dynamical effective Hamiltonian, and we check its validity by verifying the complete Poincar\'e algebra. In the adiabatic limit, we also calculate two gauge-invariant observables, namely, the binding energy for a circular orbit and the scattering angle in a hyperbolic scattering. Our results are important for developing accurate gravitational waveform models for neutron-star binaries for present and future gravitational-wave observatories.
@article{arxiv.2304.02030,
title = {Gravitoelectric dynamical tides at second post-Newtonian order},
author = {Manoj K. Mandal and Pierpaolo Mastrolia and Hector O. Silva and Raj Patil and Jan Steinhoff},
journal= {arXiv preprint arXiv:2304.02030},
year = {2024}
}
Comments
20 pages, 2 figures, 1 table; matches the published version