An process macronova/kilonova in GRB 060614: evidence for the merger of a neutron star-black hole binary
arXiv:1512.04192 · doi:10.1051/epjconf/201610908002
Abstract
After the jet break at days, the optical afterglow emission of the long-short burst GRB 060614 can be divided into two components. One is the power-law decaying forward shock afterglow emission. The other is an excess of flux in several multi-band photometric observations, which emerges at 4 days after the burst, significantly earlier than that observed for a supernova associated with a long-duration GRB. At days, the F814W-band flux drops faster than . Moreover, the spectrum of the excess component is very soft and the luminosity is extremely low. These observed signals are incompatible with those from weak supernovae, but the ejection of of process material from a black hole-neutron star merger, as recently found in some numerical simulations, can produce it. If this interpretation is correct, it represents the first time that a multi-epoch/band lightcurve of a Li-Paczynski macronova (also known as kilonova) has been obtained and black hole-neutron star mergers are sites of significant production of process elements.
A proceeding paper for the "13th International Symposium on Origin of Matter and Evolution of Galaxies", 4 pages including 2 (new) eps figures
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