The joint detection of the gravitational wave signal and the electromagnetic emission from a binary neutron star merger can place unprecedented constraint on the equation of state of supranuclear matter. Although a variety of electromagnetic counterparts have been observed for GW170817, including a short gamma-ray burst, kilonova, and the afterglow emission, the nature of the merger remnant is still unclear, however. The X-ray plateau is another important characteristics of short gamma-ray bursts. This plateau is probably due to the energy injection from a rapidly rotating magnetar. We investigate what we can learn from the detection of a gravitational wave along with the X-ray plateau. In principle, we can estimate the mass of the merger r...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
The first observation of a binary neutron star (NS) coalescence by the Advanced LIGO and Advanced Vi...
The joint detection of the gravitational wave signal and the electromagnetic emission from a binary ...
A long-standing paradigm in astrophysics is that collisions-or mergers-of two neutron stars form hig...
Binary neutron star (BNS) mergers are supposed to be the sources of a variety of astrophysical trans...
Mergers of neutron stars are known to be associated with short gamma-ray bursts(1-4). If the neutron...
Double neutron star mergers are strong sources of gravitational waves. The upcoming advanced gravita...
The discovery of the compact binary coalescence in both gravitational waves and electromagnetic radi...
We discuss the different signals, in gravitational and electromagnetic waves, emitted during the mer...
Magnetohydrodynamics simulations performed in full general relativity represent the ideal tool to un...
The gamma-ray burst that followed the first detection of gravitational waves from the merger of a Bi...
Compact binary mergers that involve at least one neutron star, either binary neutron star or black h...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The detection of a binary neutron star merger back in August 2017, in both gravitational and electro...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
The first observation of a binary neutron star (NS) coalescence by the Advanced LIGO and Advanced Vi...
The joint detection of the gravitational wave signal and the electromagnetic emission from a binary ...
A long-standing paradigm in astrophysics is that collisions-or mergers-of two neutron stars form hig...
Binary neutron star (BNS) mergers are supposed to be the sources of a variety of astrophysical trans...
Mergers of neutron stars are known to be associated with short gamma-ray bursts(1-4). If the neutron...
Double neutron star mergers are strong sources of gravitational waves. The upcoming advanced gravita...
The discovery of the compact binary coalescence in both gravitational waves and electromagnetic radi...
We discuss the different signals, in gravitational and electromagnetic waves, emitted during the mer...
Magnetohydrodynamics simulations performed in full general relativity represent the ideal tool to un...
The gamma-ray burst that followed the first detection of gravitational waves from the merger of a Bi...
Compact binary mergers that involve at least one neutron star, either binary neutron star or black h...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The detection of a binary neutron star merger back in August 2017, in both gravitational and electro...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
The first observation of a binary neutron star (NS) coalescence by the Advanced LIGO and Advanced Vi...