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In the context of neutron star mergers, we study the gravitational wave spectrum of the merger remnant using numerical relativity simulations. Postmerger spectra are characterized by a main peak frequency f2 related to the particular structure and dynamics of the remnant hot hypermassive neutron star. We show that f (2) is correlated with the tidal coupling constant κ (2) T that characterizes the binary tidal interactions during the late-inspiral merger. The relation f (2) (κ (2) T) depends very weakly on the binary total mass, mass ratio, equation of state, and thermal effects. This observation opens up the possibility of developing a model of the gravitational spectrum of every merger unifying the late-inspiral and postmerger descriptions.
Bernuzzi et al. (Thu,) studied this question.