International audienceWe adopt the Dirac-Detweiler-Whiting radiative and regular effective field in curved spacetime. Thereby, we derive straightforwardly the first order perturbative correction to the geodesic of the background in a covariant form, for the extreme mass ratio two-body problem. The correction contains the self-force contribution and a background metric dependent term
This review is concerned with the motion of a point scalar charge, a point electric charge, and a po...
Several different methods have recently been proposed for calculating the motion of a point particle...
The motion of a small compact object (SCO) in a background spacetime is investigated further in the...
We adopt the Dirac-Detweiler-Whiting radiative and regular effective field in curved spacetime. Ther...
International audienceWe adopt the Dirac-Detweiler-Whiting radiative and regular effective field in ...
The growing reality of gravitational wave astronomy is giving age-old problems a new lease of life; ...
With a view to developing a formalism that will be applicable at second perturbative order, we devis...
We provide expansions of the Detweiler-Whiting singular field for a particle with a scalar field mov...
We revisit the old problem of the self-force on a particle moving in a weak-field spacetime in the c...
This dissertation, in three parts, presents self-consistent descriptions for the motion of relativis...
We offer a novel derivation of the electromagnetic self-force acting on a charged particle moving in...
A compact object moving in curved spacetime interacts with its own gravitational field. This leads t...
The detection of gravitational waves from binary black-hole mergers by the LIGO–Virgo Collaboration ...
We present a method to integrate the equations of motion that govern bound, accelerated orbits in Sc...
We derive an effective field theory describing a pair of gravitationally interacting point particles...
This review is concerned with the motion of a point scalar charge, a point electric charge, and a po...
Several different methods have recently been proposed for calculating the motion of a point particle...
The motion of a small compact object (SCO) in a background spacetime is investigated further in the...
We adopt the Dirac-Detweiler-Whiting radiative and regular effective field in curved spacetime. Ther...
International audienceWe adopt the Dirac-Detweiler-Whiting radiative and regular effective field in ...
The growing reality of gravitational wave astronomy is giving age-old problems a new lease of life; ...
With a view to developing a formalism that will be applicable at second perturbative order, we devis...
We provide expansions of the Detweiler-Whiting singular field for a particle with a scalar field mov...
We revisit the old problem of the self-force on a particle moving in a weak-field spacetime in the c...
This dissertation, in three parts, presents self-consistent descriptions for the motion of relativis...
We offer a novel derivation of the electromagnetic self-force acting on a charged particle moving in...
A compact object moving in curved spacetime interacts with its own gravitational field. This leads t...
The detection of gravitational waves from binary black-hole mergers by the LIGO–Virgo Collaboration ...
We present a method to integrate the equations of motion that govern bound, accelerated orbits in Sc...
We derive an effective field theory describing a pair of gravitationally interacting point particles...
This review is concerned with the motion of a point scalar charge, a point electric charge, and a po...
Several different methods have recently been proposed for calculating the motion of a point particle...
The motion of a small compact object (SCO) in a background spacetime is investigated further in the...