Abstract
AbstractWe present a generalisation of the curative initial data construction derived for equal-mass compact binaries in Helferet al(2019Phys. Rev.D99044046; 2022Class. Quantum Grav.39074001) to arbitrary mass ratios. We demonstrate how these improved initial data avoid substantial spurious artifacts in the collision dynamics of unequal-mass boson-star binaries in the same way as has previously been achieved with the simpler method restricted to the equal-mass case. We employ the improved initial data to explore in detail the impact of phase offsets in the coalescence of equal- and unequal-mass boson star binaries.
Funder
National Science Foundation
National Aeronautics and Space Administration
Centre for Doctoral Training (CDT) at the University of Cambridge
Science and Technology Facilities Council
Subject
Physics and Astronomy (miscellaneous)
Cited by
13 articles.
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