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arxiv: 1903.08790 · v2 · submitted 2019-03-21 · 🌌 astro-ph.GA

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Constraining the Rastall parameters in static spacetimes with galaxy-scale strong gravitational lensing

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classification 🌌 astro-ph.GA
keywords rastallbetaetgsgravitydimensionlessfindparameterdistribution
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Recently, Rastall gravity is undergoing a significant surge in popularity. We obtain a power-law total mass-density profile for the inner region (within several effective radius) of early-type galaxies (ETGs) from the space-time structures which are described by the static spherically-symmetric solutions of Rastall gravity under the assumption of perfect fluid matter. We find that in the inner region of ETGs, the Rastall dimensionless parameter $\beta=\kappa\lambda$ determines the mass distribution. We then use 118 galaxy-galaxy strong gravitational lensing systems to constrain the Rastall dimensionless parameter $\beta$. We find that the mean value of $\beta$ for total 118 ETGs is $\beta=0.163\pm0.001$(68\% CL) with a minor intrinsic scatter of $\delta=0.020\pm 0.001$. Our work observationally illustrates the physical meaning of the Rastall dimensionless parameter in galaxy scale. From the Newtonian approximation of Rastall gravity, we also find that an absolute isothermal mass distribution for ETGs is not allowed in the framework of Rastall gravity.

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  1. Impact of Rastall gravity on hydrostatic mass of galaxy clusters

    astro-ph.CO 2026-01 unverdicted novelty 5.0

    Rastall gravity modifies hydrostatic mass estimates of galaxy clusters to produce near-unity slopes when compared to baryonic mass (no dark matter) or lensing mass (with dark matter).