A binary neutron star merger is expected to be associated by a kilonova, transient optical emission powered by radioactive decay of the neutron-rich ejecta. If the post-merger remnant is a long-lived neutron star, additional energy injection to the ejecta is possible. In this first paper of a series, we study the dynamical evolution of the engine-fed kilonova (mergernova) ejecta in detail. We perform a semi-analytical study of the problem by adopting a modified mechanical blastwave model that invokes interaction between a Poynting-flux-dominated flow and a non-magnetized massive ejecta. Shortly after the engine is turned on, a pair of shocks would be excited. The reverse shock quickly reaches the wind-acceleration region and disappears (in ...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We study the long-term evolution of ejecta formed in a binary neutron star (BNS) merger that results...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
The majority of existing results for the kilonova (or macronova) emission from material ejected duri...
We investigate $r$-process nucleosynthesis and kilonova emission resulting from binary neutron star ...
Given an increasing number of gamma-ray bursts accompanied by potential kilonovae there is a growing...
We investigate the ejecta from black hole—neutron star mergers by modeling the formation and interac...
The majority of existing results for the kilonova (or macronova) emission from material ejected duri...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We study the post-merger mass ejection of low-mass binary neutron stars (NSs) with the system mass o...
In addition to the emission of gravitational waves (GWs) the coalescence and merger of two neutron s...
We find, using high resolution numerical relativistic simulations, that the tail of the dynamical ej...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We study the long-term evolution of ejecta formed in a binary neutron star (BNS) merger that results...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
The majority of existing results for the kilonova (or macronova) emission from material ejected duri...
We investigate $r$-process nucleosynthesis and kilonova emission resulting from binary neutron star ...
Given an increasing number of gamma-ray bursts accompanied by potential kilonovae there is a growing...
We investigate the ejecta from black hole—neutron star mergers by modeling the formation and interac...
The majority of existing results for the kilonova (or macronova) emission from material ejected duri...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We study the post-merger mass ejection of low-mass binary neutron stars (NSs) with the system mass o...
In addition to the emission of gravitational waves (GWs) the coalescence and merger of two neutron s...
We find, using high resolution numerical relativistic simulations, that the tail of the dynamical ej...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We study the long-term evolution of ejecta formed in a binary neutron star (BNS) merger that results...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...