International audienceThe merger of two neutron stars is predicted to give rise to three major detectable phenomena: a short burst of gamma-rays, a gravitational wave signal, and a transient optical/near-infrared source powered by the synthesis of large amounts of very heavy elements via rapid neutron capture (the r-process). Such transients, named "macronovae" or "kilonovae", are believed to be centres of production of rare elements such as gold and platinum. The most compelling evidence so far for a kilonova was a very faint near-infrared rebrightening in the afterglow of a short gamma-ray burst at z = 0.356, although findings indicating bluer events have been reported. Here we report the spectral identification and describe the physical ...
The merger of two neutron stars is predicted to give rise to three major detectable phenomena: a sho...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
Tanvir, N.R. et. al.We report the discovery and monitoring of the near-infrared counterpart (AT2017g...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
© 2017. The American Astronomical Society. All rights reserved. We report the discovery and monitori...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
The merger of two neutron stars is predicted to give rise to three major detectable phenomena: a sho...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
Tanvir, N.R. et. al.We report the discovery and monitoring of the near-infrared counterpart (AT2017g...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
International audienceThe merger of two neutron stars is predicted to give rise to three major detec...
© 2017. The American Astronomical Society. All rights reserved. We report the discovery and monitori...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
The merger of two neutron stars is predicted to give rise to three major detectable phenomena: a sho...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
Tanvir, N.R. et. al.We report the discovery and monitoring of the near-infrared counterpart (AT2017g...