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      A lensed radio jet at milli-arcsecond resolution – II. Constraints on fuzzy dark matter from an extended gravitational arc

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          ABSTRACT

          Using a single gravitational lens system observed at ≲ 5 mas resolution with very long baseline interferometry, we place a lower bound on the mass of the fuzzy dark matter (FDM) particle, ruling out mχ ≤ 4.4 × 10−21 eV with a 20:1 posterior odds ratio relative to a smooth lens model. We generalize our result to non-scalar and multiple-field models, such as vector FDM, with mχ,vec > 1.4 × 10−21 eV. Due to the extended source structure and high angular resolution of the observation, our analysis is directly sensitive to the presence of granule structures in the main dark matter halo of the lens, which is the most generic prediction of FDM theories. A model based on well-understood physics of ultra-light dark matter fields in a gravitational potential well makes our result robust to a wide range of assumed dark matter fractions and velocity dispersions in the lens galaxy. Our result is competitive with other lower bounds on mχ from past analyses, which rely on intermediate modelling of structure formation and/or baryonic effects. Higher resolution observations taken at 10–100 GHz could improve our constraints by up to two orders of magnitude in the future.

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          Fuzzy Cold Dark Matter: The Wave Properties of Ultralight Particles

          Cold dark matter (CDM) models predict small-scale structure in excess of observations of the cores and abundance of dwarf galaxies. These problems might be solved, and the virtues of CDM models retained, even without postulating ad hoc dark matter particle or field interactions, if the dark matter is composed of ultralight scalar particles (m approximately 10(-22) eV), initially in a (cold) Bose-Einstein condensate, similar to axion dark matter models. The wave properties of the dark matter stabilize gravitational collapse, providing halo cores and sharply suppressing small-scale linear power.
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            Small-Scale Challenges to the ΛCDM Paradigm

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              Ultralight scalars as cosmological dark matter

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                Author and article information

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                Journal
                Monthly Notices of the Royal Astronomical Society: Letters
                Oxford University Press (OUP)
                1745-3925
                1745-3933
                September 2023
                June 13 2023
                September 2023
                June 13 2023
                June 13 2023
                : 524
                : 1
                : L84-L88
                Article
                10.1093/mnrasl/slad074
                efd6fc6e-b68b-4ece-a1fb-2aecd1c6283a
                © 2023

                https://creativecommons.org/licenses/by/4.0/

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