4.6 Article

A trium test on beyond ?CDM triggering parameters

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Publisher

IOP Publishing Ltd
DOI: 10.1088/1475-7516/2023/08/080

Keywords

cosmological parameters from LSS; modified gravity

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In this study, we performed a Bayesian analysis on three beyond CDM phenomenological triggering parameters using the latest cosmological probes. Our results show that the constraints on these parameters are compatible with general relativity and CDM.
We performed a Bayesian study on three beyond ?CDM phenomenological triggering parameters, the growth index-y, the dark energy equation of state parameter & omega; and the lensing deviation from the GR prediction parameter & sigma;, using the latest cosmological geometric, growth and lensing probes, all in a consistent implementation within the modified gravity cosmological solver code MGCLASS. We find, when we combined all our probes, i.e. the cosmic microwave background (CMB), the baryonic acoustic oscilation (BAO), the growth measurements f & sigma;8 and the 3x2pt joint analysis of weak lensing and galaxy clustering in photometric redshift surveys, assuming flat space, constraints compatible with general relativity and ?CDM with & omega; = -1.025 & PLUSMN; 0.045, and & sigma; = 0.992 & PLUSMN; 0.022 at the 68% level, while-y = 0.633 & PLUSMN; 0.044 is still within & SIM;2 & sigma; from the ?CDM value of-y & SIM; 0.55, and that when & sigma; is considered as constant; while-yl = -0.025 & PLUSMN; 0.045 when the lensing parameter is parameterised as function of a lensing index, introduced for the first time in this work, as & sigma;(z) = & OHM;m(z)& gamma;l.

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