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Model Selection with Strong-lensing Systems

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arxiv 1805.08640 v1 pith:LQ4MVBDQ submitted 2018-05-22 astro-ph.CO astro-ph.GAgr-qchep-ph

Model Selection with Strong-lensing Systems

classification astro-ph.CO astro-ph.GAgr-qchep-ph
keywords modelconfirmeddemonstratedispersioneinstein-deerrorslcdmlens
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper, we use an unprecedentedly large sample (158) of confirmed strong lens systems for model selection, comparing five well studied Friedmann-Robertson-Walker cosmologies: LCDM, wCDM (the standard model with a variable dark-energy equation of state), the R_h=ct universe, the (empty) Milne cosmology, and the classical Einstein-de Sitter (matter dominated) universe. We first use these sources to optimize the parameters in the standard model and show that they are consistent with Planck, though the quality of the best fit is not satisfactory. We demonstrate that this is likely due to under-reported errors, or to errors yet to be included in this kind of analysis. We suggest that the missing dispersion may be due to scatter about a pure single isothermal sphere (SIS) model that is often assumed for the mass distribution in these lenses. We then use the Bayes information criterion, with the inclusion of a suggested SIS dispersion, to calculate the relative likelihoods and ranking of these models, showing that Milne and Einstein-de Sitter are completely ruled out, while R_h=ct is preferred over LCDM/wCDM with a relative probability of ~73% versus ~24%. The recently reported sample of new strong lens candidates by the Dark Energy Survey, if confirmed, may be able to demonstrate which of these two models is favoured over the other at a level exceeding 3 sigma.

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Cited by 2 Pith papers

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  1. Study of dark interactions through strong gravitational lenses

    astro-ph.CO 2026-05 unverdicted novelty 5.0

    Strong gravitational lensing data from early-type galaxies and Abell 1689 constrain three sign-changeable dark-sector interaction models, yielding negative interaction strengths larger in magnitude than prior probes a...

  2. Joint constraints on $R_h=ct$ cosmology from DESI DR2 BAO, CC, and SN\textit{Ia} Pantheon$^+$ sample

    astro-ph.CO 2025-12 conditional novelty 4.0

    ΛCDM fits the joint DESI DR2 BAO + Pantheon+ + cosmic-chronometer data better than the coasting R_h=ct model, which yields an older universe and a lower fitted H0.