International audienceAs we showed in previous work, the dynamics and gravitational emission of binary neutron-star systems in certain scalar-tensor theories can differ significantly from that expected from general relativity (GR) in the coalescing stage. In this work we examine whether the characteristics of the electromagnetic counterparts to these binaries—driven by magnetosphere interactions prior to the merger event—can provide an independent way to test gravity in the most strongly dynamical stages of binary mergers. We find that the electromagnetic flux emitted by binaries in these scalar-tensor theories can show deviations from the GR prediction in particular cases. These differences are quite subtle, thus requiring delicate measure...
Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe...
We discuss the possibility to obtain an electromagnetic emission accompanying the gravitational wave...
Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe...
As we showed in previous work, the dynamics and gravitational emission of binary neutron-star system...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
After the first direct observations of gravitational waves generated by the coalescence of binary bl...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
The detection of a binary neutron star merger back in August 2017, in both gravitational and electro...
We carry out numerical-relativity simulations of coalescing binary neutron stars in a scalar-tensor ...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
We carry out numerical-relativity simulations of coalescing binary neutron stars in a scalar-tensor ...
Magnetohydrodynamics simulations performed in full general relativity represent the ideal tool to un...
Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe...
We discuss the possibility to obtain an electromagnetic emission accompanying the gravitational wave...
Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe...
As we showed in previous work, the dynamics and gravitational emission of binary neutron-star system...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
After the first direct observations of gravitational waves generated by the coalescence of binary bl...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
The detection of a binary neutron star merger back in August 2017, in both gravitational and electro...
We carry out numerical-relativity simulations of coalescing binary neutron stars in a scalar-tensor ...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
We carry out numerical-relativity simulations of coalescing binary neutron stars in a scalar-tensor ...
Magnetohydrodynamics simulations performed in full general relativity represent the ideal tool to un...
Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe...
We discuss the possibility to obtain an electromagnetic emission accompanying the gravitational wave...
Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe...