Late time kilonova light curves and implications to GW 170817
arXiv:1902.01197 · doi:10.3847/1538-4357/ab1f71
Abstract
We discuss the late time (tens of days) emission from the radioactive ejecta of mergers involving neutron stars, when the ionization energy loss time of beta-decay electrons and positrons exceeds the expansion time. We show that if the e are confined to the plasma (by magnetic fields), then the time dependence of the plasma heating rate, , and hence of the bolometric luminosity , are given by , nearly independent of the composition and of the instantaneous radioactive energy release rate, . This universality of the late time behavior is due to the weak dependence of the ionization loss rate on composition and on e energy. The late time IR and optical measurements of GW 170817 are consistent with this expected behavior provided that the ionization loss time exceeds the expansion time at ~d, as predicted based on the early (few day) electromagnetic emission.
Improved treatment of synchrotron subtraction
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