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Gravitational-wave cosmology with dark sirens: state of the art and perspectives for 3G detectors

Michele Mancarella, Nicola Borghi, Stefano Foffa, Edwin Genoud-Prachex, Francesco Iacovelli, Michele Maggiore, Michele Moresco, Matteo Schulz

28/11/22 Published in : arXiv:2211.15512

A joint fit of the mass and redshift distributions of the population of Binary Black Holes detected with Gravitational-Wave observations can be used to obtain constraints on the Hubble parameter and on deviations from General Relativity in the propagation of Gravitational Waves. We first present applications of this technique to the latest catalog of Gravitational-Wave events, focusing on the comparison of different parametrizations for the source-frame mass distribution of Black Hole Binaries. We find that models with more than one feature are favourite by the data, as suggested by population studies, even when varying the cosmology. Then, we discuss perspectives for the use of this technique with third generation Gravitational-Wave detectors, exploiting the recently developed Fisher information matrix Python code GWFAST.

Entire article

Phase I & II research project(s)

  • Field Theory

Phase III direction(s)

  • From Field Theory to Geometry and Topology

3 Definitions of BF Theory on Homology 3-Spheres

Stability estimates for the Vlasov-Poisson system in p-kinetic Wasserstein distances

  • Leading house

  • Co-leading house


The National Centres of Competence in Research (NCCRs) are a funding scheme of the Swiss National Science Foundation

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