Building on a recent paper in which we computed the canonical Hamiltonian of a spinning test particle in curved spacetime, at linear order in the particle's spin, we work out an improved effective-one-body (EOB) Hamiltonian for spinning black-hole binaries. As in previous descriptions, we endow the effective particle not only with a mass m, but also with a spin S*. Thus, the effective particle interacts with the effective Kerr background (having spin S_Kerr) through a geodesic-type interaction and an additional spin-dependent interaction proportional to S*. When expanded in post-Newtonian (PN) orders, the EOB Hamiltonian reproduces the leading order spin-spin coupling and the spin-orbit coupling through 2.5PN order, for any mass-ratio. Also...
It has been suggested that amplitudes for quantum higher-spin massive particles exchanging gravitons...
International audienceWe use the canonical Hamiltonian formalism to generalize to spinning point par...
International audienceWe explore the performance of an updated effective one-body (EOB) model for sp...
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...
In the effective-one-body (EOB) approach, the dynamics of two compact objects of masses m1 and m2 an...
We compute the periastron advance using the effective-one-body formalism for binary black holes movi...
International audienceWe compute the rotations, during a scattering encounter, of the spins of two g...
International audienceWe consider a spinning test-body in circular motion around a nonrotating black...
We describe a systematic framework for finding the conservative potential of compact binary systems ...
In a compact binary coalescence, the spins of the compact objects can have a significant effect on t...
International audienceWe present an improved numerical relativity (NR) calibration of the new effect...
We use the canonical Hamiltonian formalism to generalize to spinning point particles the first law o...
We derive a Hamiltonian for an extended spinning test-body in a curved background spacetime, to quad...
31 pages, 7 tables, and 13 figuresWe investigate the non-adiabatic dynamics of spinning black hole b...
It has been suggested that amplitudes for quantum higher-spin massive particles exchanging gravitons...
International audienceWe use the canonical Hamiltonian formalism to generalize to spinning point par...
International audienceWe explore the performance of an updated effective one-body (EOB) model for sp...
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...
In the effective-one-body (EOB) approach, the dynamics of two compact objects of masses m1 and m2 an...
We compute the periastron advance using the effective-one-body formalism for binary black holes movi...
International audienceWe compute the rotations, during a scattering encounter, of the spins of two g...
International audienceWe consider a spinning test-body in circular motion around a nonrotating black...
We describe a systematic framework for finding the conservative potential of compact binary systems ...
In a compact binary coalescence, the spins of the compact objects can have a significant effect on t...
International audienceWe present an improved numerical relativity (NR) calibration of the new effect...
We use the canonical Hamiltonian formalism to generalize to spinning point particles the first law o...
We derive a Hamiltonian for an extended spinning test-body in a curved background spacetime, to quad...
31 pages, 7 tables, and 13 figuresWe investigate the non-adiabatic dynamics of spinning black hole b...
It has been suggested that amplitudes for quantum higher-spin massive particles exchanging gravitons...
International audienceWe use the canonical Hamiltonian formalism to generalize to spinning point par...
International audienceWe explore the performance of an updated effective one-body (EOB) model for sp...