The only binary neutron star merger gravitational wave event with detected electromagnetic counterparts recorded to date is GRB170817A. This merger occurred in a rarefied medium with a density smaller than 10⁻³ − 10⁻² cm⁻³. Since kicks are imparted to neutron star binaries upon formation, and due to their long delay times before merger, such low-density circum-merger media are generally expected. However, there is some indirect evidence for fast-merging or low-kick binaries, which would coalesce in denser environments. Nonetheless, present astronomical data are largely inconclusive on the possibility of these high-density mergers. We describe a method to directly probe this hypothetical population of high-density mergers through multi-messe...
International audienceFollowing the historical observation of GW170817 and its electromagnetic follo...
The recent detection of a neutron star binary through gravitational waves, GW170817, has offered ano...
Assuming all binary neutron star (BNS) mergers produce short gamma-ray bursts, we combine the merger...
The only binary neutron star merger gravitational wave event with detected electromagnetic counterpa...
Following the historical observations of GW170817 and its multi-wavelength afterglow, more radio aft...
The gravitational-wave signal from the merger of two neutron stars cannot be easily differentiated f...
Binary neutron star mergers offer a new and independent means of measuring the Hubble constant H0 by...
The afterglow emission from neutron star mergers provides a unique probe of the launching of the rel...
© 2016 The Authors. We investigate the prospects for joint low-latency gravitational wave (GW) detec...
Context. Black hole neutron star (BHNS) mergers have recently been detected through their gravitatio...
We present a robust method to characterize the gravitational wave emission from the remnant of a neu...
We present a robust method to characterize the gravitational wave emission from the remnant of a neu...
(Abridged) While the gravitational-wave (GW) signal GW170817 was accompanied by a variety of electro...
International audienceFollowing the historical observation of GW170817 and its electromagnetic follo...
The recent detection of a neutron star binary through gravitational waves, GW170817, has offered ano...
Assuming all binary neutron star (BNS) mergers produce short gamma-ray bursts, we combine the merger...
The only binary neutron star merger gravitational wave event with detected electromagnetic counterpa...
Following the historical observations of GW170817 and its multi-wavelength afterglow, more radio aft...
The gravitational-wave signal from the merger of two neutron stars cannot be easily differentiated f...
Binary neutron star mergers offer a new and independent means of measuring the Hubble constant H0 by...
The afterglow emission from neutron star mergers provides a unique probe of the launching of the rel...
© 2016 The Authors. We investigate the prospects for joint low-latency gravitational wave (GW) detec...
Context. Black hole neutron star (BHNS) mergers have recently been detected through their gravitatio...
We present a robust method to characterize the gravitational wave emission from the remnant of a neu...
We present a robust method to characterize the gravitational wave emission from the remnant of a neu...
(Abridged) While the gravitational-wave (GW) signal GW170817 was accompanied by a variety of electro...
International audienceFollowing the historical observation of GW170817 and its electromagnetic follo...
The recent detection of a neutron star binary through gravitational waves, GW170817, has offered ano...
Assuming all binary neutron star (BNS) mergers produce short gamma-ray bursts, we combine the merger...