Using effective field theory techniques we calculate the source multipole moments needed to obtain the spin contributions to the power radiated in gravitational waves from inspiralling compact binaries to third Post-Newtonian order (3PN). The multipoles depend linearly and quadratically on the spins and include both spin(1)spin(2) and spin(1)spin(1) components. The results in this paper provide the last missing ingredient required to determine the phase evolution to 3PN including all spin effects which we will report in a separate paper.</p
Using the gravitational potential and source multipole moments bilinear in the spins, first computed...
Open Access - IOP selectThis paper is motivated by the need to improve the post-Newtonian (PN) ampli...
Restricted Access. An open access version is available at arXiv.org.(one of the alternative location...
Using the NRGR effective field theory formalism we calculate the remaining source multipole moments ...
Using the NRGR effective field theory formalism we calculate the remaining source multipole moments ...
International audienceWe compute the next-to-next-to-leading order spin-orbit contributions in the t...
Using the gravitational potential and source multipole moments bilinear in the spins, first computed...
International audienceWe calculate the gravitational waveform for spinning, precessing compact binar...
International audienceThe gravitational waveform (GWF) generated by inspiralling compact binaries mo...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Restricted Access.This second paper in a series developing a new formalism of the generation of grav...
The gravitational waveform (GWF) generated by inspiralling compact binaries moving in quasi-circular...
We investigate the dynamics of spinning binaries of compact objects at the next-to-leading order in ...
The gravitational waveform (GWF) generated by inspiralling compact binaries moving in quasi-circular...
We complete the post-Newtonian (PN) prediction at the 3.5PN order for thespin contributions to the g...
Using the gravitational potential and source multipole moments bilinear in the spins, first computed...
Open Access - IOP selectThis paper is motivated by the need to improve the post-Newtonian (PN) ampli...
Restricted Access. An open access version is available at arXiv.org.(one of the alternative location...
Using the NRGR effective field theory formalism we calculate the remaining source multipole moments ...
Using the NRGR effective field theory formalism we calculate the remaining source multipole moments ...
International audienceWe compute the next-to-next-to-leading order spin-orbit contributions in the t...
Using the gravitational potential and source multipole moments bilinear in the spins, first computed...
International audienceWe calculate the gravitational waveform for spinning, precessing compact binar...
International audienceThe gravitational waveform (GWF) generated by inspiralling compact binaries mo...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Restricted Access.This second paper in a series developing a new formalism of the generation of grav...
The gravitational waveform (GWF) generated by inspiralling compact binaries moving in quasi-circular...
We investigate the dynamics of spinning binaries of compact objects at the next-to-leading order in ...
The gravitational waveform (GWF) generated by inspiralling compact binaries moving in quasi-circular...
We complete the post-Newtonian (PN) prediction at the 3.5PN order for thespin contributions to the g...
Using the gravitational potential and source multipole moments bilinear in the spins, first computed...
Open Access - IOP selectThis paper is motivated by the need to improve the post-Newtonian (PN) ampli...
Restricted Access. An open access version is available at arXiv.org.(one of the alternative location...