Interpreting binary neutron star mergers: describing the binary neutron star dynamics, modelling gravitational waveforms, and analyzing detections

Publication date

2021-03-01

Authors

Dietrich, TimISNI 0000000518136325
Hinderer, TanjaISNI 0000000127510041
Samajdar, AnuradhaORCID 0000-0002-0857-6018ISNI 0000000512605709

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Gravitational waves emitted from the coalescence of neutron star binaries open a new window to probe matter and fundamental physics in unexplored, extreme regimes. To extract information about the supranuclear matter inside neutron stars and the properties of the compact binary systems, robust theoretical prescriptions are required. We give an overview about general features of the dynamics and the gravitational wave signal during the binary neutron star coalescence. We briefly describe existing analytical and numerical approaches to investigate the highly dynamical, strong-field region during the merger. We review existing waveform approximants and discuss properties and possible advantages and shortcomings of individual waveform models, and their application for real gravitational-wave data analysis.

Keywords

Equation of state, Gravitational waves, Neutron stars, Tidal effects, Physics and Astronomy (miscellaneous)

Citation

Dietrich, T, Hinderer, T & Samajdar, A 2021, 'Interpreting binary neutron star mergers: describing the binary neutron star dynamics, modelling gravitational waveforms, and analyzing detections', General Relativity and Gravitation, vol. 53, no. 3, 27, pp. 1-76. https://doi.org/10.1007/s10714-020-02751-6