Cluster strong lensing cosmography is a promising probe of the background geometry of the Universe and several studies have emerged thanks to the increased quality of observations using space-And ground-based telescopes. For the first time, we used a sample of five cluster strong lenses to measure the values of cosmological parameters and combine them with those from classical probes. In order to assess the degeneracies and the effectiveness of strong-lensing cosmography in constraining the background geometry of the Universe, we adopted four cosmological scenarios. We found good constraining power on the total matter density of the Universe (ωm) and the equation of state of the dark energy parameter w. For a flat wCDM cosmology, we found ωm = 0.30-0.11+0.09 and w =-1.12-0.32+0.17 from strong lensing only. Interestingly, we show that the constraints from the cosmic microwave background (CMB) are improved by factors of 2.5 and 4.0 on ωm and w, respectively, when combined with our posterior distributions in this cosmological model. In a scenario where the equation of state of dark energy evolves with redshift, the strong lensing constraints are compatible with a cosmological constant (i.e. wâ =â-1). In a curved cosmology, our strong lensing analyses can accommodate a large range of values for the curvature of the Universe of ωk = 0.28-0.21+0.16. In all cosmological scenarios, we show that our strong lensing constraints are complementary and in good agreement with measurements from the CMB, baryon acoustic oscillations, and Type Ia supernovae. Our results show that cluster strong lensing cosmography is a potentially powerful probe to be included in the cosmological analyses of future surveys.

Galaxy cluster strong lensing cosmography: Cosmological constraints from a sample of regular galaxy clusters / G.B. Caminha, S.H. Suyu, C. Grillo, P. Rosati. - In: ASTRONOMY & ASTROPHYSICS. - ISSN 1432-0746. - 657:(2022 Jan 18), pp. A83.1-A83.10. [10.1051/0004-6361/202141994]

Galaxy cluster strong lensing cosmography: Cosmological constraints from a sample of regular galaxy clusters

C. Grillo
Penultimo
;
2022

Abstract

Cluster strong lensing cosmography is a promising probe of the background geometry of the Universe and several studies have emerged thanks to the increased quality of observations using space-And ground-based telescopes. For the first time, we used a sample of five cluster strong lenses to measure the values of cosmological parameters and combine them with those from classical probes. In order to assess the degeneracies and the effectiveness of strong-lensing cosmography in constraining the background geometry of the Universe, we adopted four cosmological scenarios. We found good constraining power on the total matter density of the Universe (ωm) and the equation of state of the dark energy parameter w. For a flat wCDM cosmology, we found ωm = 0.30-0.11+0.09 and w =-1.12-0.32+0.17 from strong lensing only. Interestingly, we show that the constraints from the cosmic microwave background (CMB) are improved by factors of 2.5 and 4.0 on ωm and w, respectively, when combined with our posterior distributions in this cosmological model. In a scenario where the equation of state of dark energy evolves with redshift, the strong lensing constraints are compatible with a cosmological constant (i.e. wâ =â-1). In a curved cosmology, our strong lensing analyses can accommodate a large range of values for the curvature of the Universe of ωk = 0.28-0.21+0.16. In all cosmological scenarios, we show that our strong lensing constraints are complementary and in good agreement with measurements from the CMB, baryon acoustic oscillations, and Type Ia supernovae. Our results show that cluster strong lensing cosmography is a potentially powerful probe to be included in the cosmological analyses of future surveys.
Cosmological parameters; Cosmology: observations; Dark energy; Galaxies: clusters: general; Gravitational lensing: strong;
Settore FIS/05 - Astronomia e Astrofisica
   Zooming into Dark Matter and proto-galaxies with massive lensing clusters
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2017WSCC32_002
18-gen-2022
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1020136
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