Gravitational Wave Signatures of Dark Matter in Binary Neutron Star Mergers
ORAL · Invited
Abstract
In addition, I will review the effect of dark matter on binary neutron star mergers and emitted gravitational wave signals. I will present the numerical-relativity simulations of compact stars admixed with the dark matter component and discuss how the present and next-generation gravitational wave telescopes could shed light on dark matter-admixed compact stars and constrain the dark matter properties.
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Publication: E. Giangrandi, H. Rüter, M. Emma, N. Kunert, A, Adhikari, W. Tichy, V. Sagun, T. Dietrich, C. Providência, Gravitational wave signatures of dark matter in binary neutron star mergers, In prep. (2025)
H. Koehn, E. Giangrandi, N. Kunert, R. Somasundaram, V. Sagun, T. Dietrich, The impact of dark matter on tidal signatures in neutron star mergers with Einstein Telescope, Preprint arXiv: 2408.14711 [astro-ph.HE] (2024) (Accepted to PRD)
H. R. Rüter, V. Sagun, W. Tichy, T. Dietrich, Quasi-equilibrium configurations of binary systems of dark matter admixed neutron stars, Phys. Rev. D, 108, 124080 (2023); DOI: 10.1103/PhysRevD.108.124080
E. Giangrandi, V. Sagun, O. Ivanytskyi, C. Providência, T. Dietrich, The effect of self-interacting bosonic dark matter on neutron star properties, Astroph. J., 953, 115 (2023); DOI: 10.3847/1538-4357/ace104
Presenters
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Violetta Sagun
University of Southampton
Authors
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Violetta Sagun
University of Southampton
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Ananya Adhikari
Florida Atlantic University
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Tim Dietrich
University of Potsdam
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Mattia Emma
Royal Holloway University of London
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Edoardo Giangrandi
University of Coimbra/University of Potsdam
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Hauke Koehn
University of Potsdam
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Nina Kunert
University of Potsdam
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Constança Providência
University of Coimbra
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Hannes R Rüter
Instituto Superior Técnico, University of Lisbon
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Rahul Somasundaram
Los Alamos National Lab (LANL), Syracuse University
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Wolfgang H Tichy
Florida Atlantic University
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Oleksii Ivanytskyi
University of Wroclaw