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)<br><br>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)<br><br>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<br><br>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