{ "id": "2210.11935", "version": "v1", "published": "2022-10-21T13:12:18.000Z", "updated": "2022-10-21T13:12:18.000Z", "title": "Forecasting constraints on deviations from general relativity in $f(Q)$ gravity with standard sirens", "authors": [ "Rocco D'Agostino", "Rafael C. Nunes" ], "comment": "11 pages, 3 figures", "categories": [ "gr-qc", "astro-ph.CO" ], "abstract": "In this work, we explore how modified gravity theories based on the non-metricity scalar, known as $f(Q)$ gravity, affects the propagation of gravitational waves from inspiraling of binary systems. We discuss forecast constraints on $f(Q)$ gravity by considering standard siren events in two contexts: i) simulated sources of gravitational waves as black hole - neutron star binary systems, emitting in the frequency band of the third-generation detector represented by the Einstein Telescope (ET); ii) three standard siren mock catalogs based on the merger of massive black hole binaries that are expected to be observed in the operating frequency band of the Laser Interferometer Space Antenna (LISA). We find that, within the ET sensitivity, it will be possible to test deviations from general relativity at $<3\\%$ accuracy in the redshift range $0