The lure of sirens: joint distance and velocity measurements with third-generation detectors

Author:

Alfradique Viviane1,Quartin Miguel123ORCID,Amendola Luca3,Castro Tiago456ORCID,Toubiana Alexandre7

Affiliation:

1. Instituto de Física, Universidade Federal do Rio de Janeiro , Rio de Janeiro, RJ 21941-972, Brazil

2. Observatório do Valongo, Universidade Federal do Rio de Janeiro , Rio de Janeiro, RJ 20080-090, Brazil

3. Institute of Theoretical Physics, Heidelberg University , Philosophenweg 16, D-69120 Heidelberg, Germany

4. INAF – Osservatorio Astronomico di Trieste , I-34131 Trieste, Italy

5. IFPU – Institute for Fundamental Physics of the Universe , I-34151 Trieste, Italy

6. INFN – Sezione di Trieste , I-34100 Trieste, Italy

7. Max Planck Institute for Gravitational Physics (Albert Einstein Institute) , Am Mühlenberg 1, D-14476 Potsdam-Golm, Germany

Abstract

ABSTRACT The next generation of detectors will detect gravitational waves from binary neutron stars at cosmological distances, for which around a 1000 electromagnetic follow-ups may be observed per year. So far, most work devoted to the expected cosmological impact of these standard sirens employed them only as distance indicators. Only recently their use as tracers of clustering, similar to what already proposed for supernovae, has been studied. Focusing on the expected specifications of the Einstein Telescope (ET), we forecast here the performance on cosmological parameters of future standard sirens as both distance and density indicators, with emphasis on the linear perturbation growth index and on spatial curvature. We improve upon previous studies in a number of ways: a more detailed analysis of available telescope time, the inclusion of more cosmological and nuisance parameters, the Alcock–Paczynski correction, the use of sirens also as both velocity and density tracers, and a more accurate estimation of the distance posterior. We find that the analysis of the clustering of sirens improves the constraints on H0 by 30 per cent and on Ωk0 by over an order of magnitude, with respect to their use merely as distance indicators. With 5 yr of joint ET and Rubin Observatory follow-ups we could reach precision of 0.1 km s−1 Mpc−1 in H0 and 0.02 in Ωk0 using only data in the range 0 < z < 0.5. We also find that the use of sirens as tracers of density, and not only velocity, yields good improvements on the growth of structure constraints.

Funder

CNPq

FAPERJ

CAPES

DFG

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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