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Universal Relations for Binary Neutron Star Mergers with Long-lived Remnants
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Universal Relations for Binary Neutron Star Mergers with Long-lived Remnants

1st ed. 2022

Book Details

Format Paperback / Softback
Book Series BestMasters
ISBN-10 3658368403
ISBN-13 9783658368401
Edition 1st ed. 2022
Publisher Springer Fachmedien Wiesbaden
Imprint Springer Spektrum
Country of Manufacture GB
Country of Publication GB
Publication Date Mar 29th, 2022
Print length 65 Pages
Product Classification: Astronomy, space & timeAstrophysics
Ksh 9,900.00
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In the last 25 years, an extensive body of work has developed various equation of state independent - or (approximately) universal - relations that allow for the inference of neutron star parameters from gravitational wave observations.
In the last 25 years, an extensive body of work has developed various equation of state independent - or (approximately) universal - relations that allow for the inference of neutron star parameters from gravitational wave observations. These works, however, have mostly been focused on singular neutron stars, while our observational efforts at the present, and in the near future, will be focused on binary neutron star (BNS) mergers. In light of these circumstances, the last five years have also given rise to more attempts at developing universal relations that relate BNS pre-merger neutron stars to stellar parameters of the post-merger object, mostly driven by numerical relativity simulations. In this thesis a first attempt at perturbatively deriving universal relations for binary neutron star mergers with long-lived neutron star remnants is presented. The author succeeds in confirming previous results relating pre-merger binary tidal deformabilities to the f-mode frequency of the post-merger object. Combining this result with recent advances of computing the f-mode frequency of fast rotating neutron stars, he also derives a combined relation that relates the pre-merger binary tidal deformability of a BNS to the effective compactness of a long-lived neutron star remnant. Finally, he also proposes a direct relation between these quantities with improved accuracy. 

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