Gravitational waves are predicted by the general theory of relativity. It has been shown that gravitational waves have a nonlinear memory, displacing test masses permanently. This is called the Christodoulou memory. We proved that the electromagnetic field contributes at highest order to the nonlinear memory effect of gravitational waves, enlarging the permanent displacement of test masses. In experiments like LISA or LIGO which measure distances of test masses, the Christodoulou memory will manifest itself as a permanent displacement of these objects. It has been suggested to detect the Christodoulou memory effect using radio telescopes investigating small changes in pulsar’s pulse arrival times. The latter experiments are based on p...
After the first direct observations of gravitational waves generated by the coalescence of binary bl...
1 Abstract: We prove that for spacetimes solving the Einstein-Maxwell (EM) equations, the electromag...
A coalescing compact binary, during its last tenth of a second of life, emits a burst of gravitation...
Some astrophysical sources of gravitational waves can produce a memory effect, which causes a perm...
Some astrophysical sources of gravitational waves can produce a “memory effect, ” which causes a per...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
In this paper we shall consider the potential effect of the magnetic dipole moment of a neutron sta...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
Abstract: We describe neutrino radiation in general relativity by introducing the energy-momentum te...
A coalescing compact binary, during its last tenth of a second of life, emits a burst of gravitation...
After the first direct observations of gravitational waves generated by the coalescence of binary bl...
1 Abstract: We prove that for spacetimes solving the Einstein-Maxwell (EM) equations, the electromag...
A coalescing compact binary, during its last tenth of a second of life, emits a burst of gravitation...
Some astrophysical sources of gravitational waves can produce a memory effect, which causes a perm...
Some astrophysical sources of gravitational waves can produce a “memory effect, ” which causes a per...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
In this paper we shall consider the potential effect of the magnetic dipole moment of a neutron sta...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
Abstract: We describe neutrino radiation in general relativity by introducing the energy-momentum te...
A coalescing compact binary, during its last tenth of a second of life, emits a burst of gravitation...
After the first direct observations of gravitational waves generated by the coalescence of binary bl...
1 Abstract: We prove that for spacetimes solving the Einstein-Maxwell (EM) equations, the electromag...
A coalescing compact binary, during its last tenth of a second of life, emits a burst of gravitation...