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Research PaperResearchia:202610.01015

Is the acceleration scale of the radial acceleration relation tracking the cosmic expansion rate?

G. T. Alcock

Abstract

The MUSE-DARK survey has reported a highly significant increase of the radial acceleration relation (RAR) scale $a_0$ with redshift over $0.33<z<1.44$, parametrized linearly and described by its authors as phenomenological. We confront the same binned measurements with physically motivated scalings, using the continuous family $a_0(z)=A(1+z)^γ$ as the primary statistic. We find $γ=0.78\pm0.15$ (statistical, plotted uncertainties read as $1σ$): a redshift-independent scale ($γ=0$) is excluded at ...

Submitted: October 1, 2026Subjects: Physics; Physics

Description / Details

The MUSE-DARK survey has reported a highly significant increase of the radial acceleration relation (RAR) scale a0a_0 with redshift over 0.33<z<1.440.33<z<1.44, parametrized linearly and described by its authors as phenomenological. We confront the same binned measurements with physically motivated scalings, using the continuous family a0(z)=A(1+z)γa_0(z)=A(1+z)^γ as the primary statistic. We find γ=0.78±0.15γ=0.78\pm0.15 (statistical, plotted uncertainties read as 1σ1σ): a redshift-independent scale (γ=0γ=0) is excluded at 5.3σ5.3σ by a nested test, and the matter-density scaling (γ=3/2γ=3/2) at 4.8σ4.8σ. Hubble tracking, a0(z)∝H(z)a_0(z)\propto H(z), with effective exponent γ≃1.10γ\simeq1.10, is consistent with the measurement within 2.1σ2.1σ and is the information-criterion-preferred one-parameter description; its amplitude, A=(1.40±0.03)×10−10A=(1.40\pm0.03)\times10^{-10} m s−2^{-2}, lies 17 per cent above the canonical SPARC value, within the latter's systematic-dominated uncertainty. The survey's remark that the evolution is 'faster than H(z)H(z)' is shown to be anchor-dependent: relative to a floating amplitude the binned growth is, if anything, mildly shallower than H(z)H(z). All exponent-based conclusions are invariant under redshift-independent rescalings of a0a_0, and hence robust to common-mode stellar-mass systematics. At current precision, the long-noted coincidence a0∼cH0a_0\sim cH_0 survives its first confrontation with direct kinematic measurements at intermediate redshift.


Source: arXiv:2609.38796v1 - http://arxiv.org/abs/2609.38796v1 PDF: https://arxiv.org/pdf/2609.38796v1 Original Link: http://arxiv.org/abs/2609.38796v1

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Date:
Oct 1, 2026
Topic:
Physics
Area:
Physics
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Is the acceleration scale of the radial acceleration relation tracking the cosmic expansion rate? | Researchia