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Galactic Mass-to-Light Ratios With Superfluid Dark Matter

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arxiv 2201.07282 v2 pith:TSX2GU5H submitted 2022-01-18 astro-ph.GA gr-qc

Galactic Mass-to-Light Ratios With Superfluid Dark Matter

classification astro-ph.GA gr-qc
keywords superfluiddarkmatterfitsmass-to-lightratiosmondrotation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We make rotation curve fits to test the superfluid dark matter model. In addition to verifying that the resulting fits match the rotation curve data reasonably well, we aim to evaluate how satisfactory they are with respect to two criteria, namely, how reasonable the resulting stellar mass-to-light ratios are and whether the fits end up in the regime of superfluid dark matter where the model resembles modified Newtonian dynamics (MOND). We fitted the superfluid dark matter model to the rotation curves of 169 galaxies in the SPARC sample. We found that the mass-to-light ratios obtained with superfluid dark matter are generally acceptable in terms of stellar populations. However, the best-fit mass-to-light ratios have an unnatural dependence on the size of the galaxy in that giant galaxies have systematically lower mass-to-light ratios than dwarf galaxies. A second finding is that the superfluid often fits the rotation curves best in the regime where the superfluid's force cannot resemble that of MOND without adjusting a boundary condition separately for each galaxy. In that case, we can no longer expect superfluid dark matter to reproduce the phenomenologically observed scaling relations that make MOND appealing. If, on the other hand, we consider only solutions whose force approximates MOND well, then the total mass of the superfluid is in tension with gravitational lensing data. We conclude that even the best fits with superfluid dark matter are still unsatisfactory for two reasons. First, the resulting stellar mass-to-light ratios show an unnatural trend with galaxy size. Second, the fits do not end up in the regime that automatically resembles MOND, and if we force the fits to do so, the total dark matter mass is in tension with strong lensing data.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Bridging Superfluid and Nonminimally Coupled BEC Dark Matter through RAQUAL

    gr-qc 2026-07 accept novelty 6.0

    SFDM’s MONDian phonon–baryon interaction is the Einstein-frame image of BECDM’s Einstein-tensor coupling plus a small Ricci non-minimal term; the kinetic sectors stay inequivalent.

  2. Bridging Superfluid and Nonminimally Coupled BEC Dark Matter through RAQUAL

    gr-qc 2026-07 conditional novelty 6.0

    SFDM's phonon–baryon force maps onto BECDM's non-minimal Einstein-tensor coupling plus a small Ricci coupling, but the non-analytic kinetic term prevents full dynamical equivalence.