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Redshift drift in radially inhomogeneous Lema\^itre-Tolman-Bondi spacetimes

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abstract

We provide a formula for estimating the redshift and its secular change (redshift drift) in Lema\^itre-Tolman-Bondi (LTB) spherically symmetric universes. We compute the scaling of the redshift drift for LTB models that predict Hubble diagrams indistinguishable from those of the standard cosmological model, the flat $\Lambda$ Cold Dark Matter ($\Lambda$CDM) model. We show that the redshift drift for these degenerate LTB models is typically different from that predicted in the $\Lambda$CDM scenario. We also highlight and discuss some unconventional redshift-drift signals that arise in LTB universes and give them distinctive features compared to the standard model. We argue that the redshift drift is a metric observable that allows to reduce the degrees of freedom of spherically symmetric models and to make them more predictive and thus falsifiable.

fields

gr-qc 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Inhomogeneous model with a space dependent Cosmological Constant

gr-qc · 2025-01-14 · conditional · novelty 6.0

An inhomogeneous Lemaitre model with a space-dependent cosmological constant and a unified dark fluid can reproduce the local and early-universe Hubble constants and generates testable predictions for expansion rates and redshift drift.

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  • Inhomogeneous model with a space dependent Cosmological Constant gr-qc · 2025-01-14 · conditional · none · ref 33 · internal anchor

    An inhomogeneous Lemaitre model with a space-dependent cosmological constant and a unified dark fluid can reproduce the local and early-universe Hubble constants and generates testable predictions for expansion rates and redshift drift.