We derive the geodesic equation of motion in the presence of weak gravitational fields produced by relativistic sources such as cosmic strings, decomposed into scalar, vector and tensor parts. We find that the vector (gravito-magnetic) force is an important contributor, and for non-relativistic particles we recover the well-known result for the impulse from a moving straight string. Our results can be straightforwardly incorporated into N-body simulations to allow for the presence of cosmic defects or other sources of weak gravitational fields
The motion of a classical spinning test particle in the field of a weak plane gravitational wave is ...
We investigate the purely spatial Lagrangian coordinate transformation from the Lagrangian to the fu...
The huge leap in volume and precision that will be achieved by upcoming large sky surveys will make ...
Abstract. We present a framework for general relativistic N-body simulations in the regime of weak g...
We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the...
We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the...
We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the...
Accretion disks surrounding compact objects, and other environmental factors, deviate satellites fro...
We show how standard Newtonian N-body simulations can be interpreted in terms of the weak-field limi...
An exact solution of Einstein's field equations for a point mass surrounded by a static, spherically...
A weak-field solution of Einstein's equations is constructed. It is generated by a circular cosmic s...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
A weak-field solution of Einstein's equations is constructed. It is generated by a circular cosmic s...
The N-body gauge allows the introduction of relativistic effects in Newtonian cosmological simulatio...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
The motion of a classical spinning test particle in the field of a weak plane gravitational wave is ...
We investigate the purely spatial Lagrangian coordinate transformation from the Lagrangian to the fu...
The huge leap in volume and precision that will be achieved by upcoming large sky surveys will make ...
Abstract. We present a framework for general relativistic N-body simulations in the regime of weak g...
We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the...
We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the...
We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the...
Accretion disks surrounding compact objects, and other environmental factors, deviate satellites fro...
We show how standard Newtonian N-body simulations can be interpreted in terms of the weak-field limi...
An exact solution of Einstein's field equations for a point mass surrounded by a static, spherically...
A weak-field solution of Einstein's equations is constructed. It is generated by a circular cosmic s...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
A weak-field solution of Einstein's equations is constructed. It is generated by a circular cosmic s...
The N-body gauge allows the introduction of relativistic effects in Newtonian cosmological simulatio...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
The motion of a classical spinning test particle in the field of a weak plane gravitational wave is ...
We investigate the purely spatial Lagrangian coordinate transformation from the Lagrangian to the fu...
The huge leap in volume and precision that will be achieved by upcoming large sky surveys will make ...