In the effective-one-body (EOB) approach, the dynamics of two compact objects of masses m1 and m2 and spins S1 and S2 is mapped into the dynamics of one test particle of mass μ=m1m2/(m1+m2) and spin S* moving in a deformed Kerr metric with mass M=m1+m2 and spin SKerr. In a previous paper, we computed an EOB Hamiltonian for spinning black-hole binaries that (i) when expanded in post-Newtonian orders, reproduces the leading-order spin-spin coupling and the leading and next-to-leading order spin-orbit couplings for any mass ratio, and (iii) reproduces all spin-orbit couplings in the test-particle limit. Here we extend this EOB Hamiltonian to include next-to-next-to-leading spin-orbit couplings for any mass ratio. We discuss two classes of EOB ...
International audienceWe present an improved numerical relativity (NR) calibration of the new effect...
For a self-gravitating particle of mass μ in orbit around a Kerr black hole of mass M≫μ, we compute ...
We describe a systematic framework for finding the conservative potential of compact binary systems ...
In the effective-one-body (EOB) approach, the dynamics of two compact objects of masses m1 and m2 an...
Building on a recent paper in which we computed the canonical Hamiltonian of a spinning test particl...
Building on a recent paper in which we computed the canonical Hamiltonian of a spinning test particl...
International audienceWe compute the rotations, during a scattering encounter, of the spins of two g...
We propose a way of including the next-to-leading (NLO) order spin-spin coupling in an effective-one...
31 pages, 7 tables, and 13 figuresWe investigate the non-adiabatic dynamics of spinning black hole b...
We compute the periastron advance using the effective-one-body formalism for binary black holes movi...
In a compact binary coalescence, the spins of the compact objects can have a significant effect on t...
We use the canonical Hamiltonian formalism to generalize to spinning point particles the first law o...
This paper presents a tunable effective-one-body (EOB) model for black-hole (BH) binaries of arbitra...
We analyze the inspiral dynamics of equal-mass precessing black-hole binaries using multi-timescale ...
International audienceWe consider a spinning test-body in circular motion around a nonrotating black...
International audienceWe present an improved numerical relativity (NR) calibration of the new effect...
For a self-gravitating particle of mass μ in orbit around a Kerr black hole of mass M≫μ, we compute ...
We describe a systematic framework for finding the conservative potential of compact binary systems ...
In the effective-one-body (EOB) approach, the dynamics of two compact objects of masses m1 and m2 an...
Building on a recent paper in which we computed the canonical Hamiltonian of a spinning test particl...
Building on a recent paper in which we computed the canonical Hamiltonian of a spinning test particl...
International audienceWe compute the rotations, during a scattering encounter, of the spins of two g...
We propose a way of including the next-to-leading (NLO) order spin-spin coupling in an effective-one...
31 pages, 7 tables, and 13 figuresWe investigate the non-adiabatic dynamics of spinning black hole b...
We compute the periastron advance using the effective-one-body formalism for binary black holes movi...
In a compact binary coalescence, the spins of the compact objects can have a significant effect on t...
We use the canonical Hamiltonian formalism to generalize to spinning point particles the first law o...
This paper presents a tunable effective-one-body (EOB) model for black-hole (BH) binaries of arbitra...
We analyze the inspiral dynamics of equal-mass precessing black-hole binaries using multi-timescale ...
International audienceWe consider a spinning test-body in circular motion around a nonrotating black...
International audienceWe present an improved numerical relativity (NR) calibration of the new effect...
For a self-gravitating particle of mass μ in orbit around a Kerr black hole of mass M≫μ, we compute ...
We describe a systematic framework for finding the conservative potential of compact binary systems ...