Slowly rotating gas-rich galaxies in modified Newtonian dynamics (MOND)
arXiv:1301.5847 · doi:10.1088/0004-6256/145/3/61
Abstract
We have carried out a search for gas-rich dwarf galaxies that have lower rotation velocities in their outskirts than MOdified Newtonian Dynamics (MOND) predicts, so that the amplitude of their rotation curves cannot be fitted by arbitrarily increasing the mass-to-light ratio of the stellar component or by assuming additional undetected matter. With presently available data, the gas-rich galaxies UGC 4173, Holmberg II, ESO 245-G05, NGC 4861 and ESO 364-G029 deviate most from MOND predictions and, thereby, provide a sample of promising targets in testing the MOND framework. In the case of Holmberg II and NGC 4861, we find that their rotation curves are probably inconsistent with MOND, unless their inclinations and distances differ significantly from the nominal ones. The galaxy ESO 364-G029 is a promising target because its baryonic mass and rotation curve are similar to Holmberg II but presents a higher inclination. Deeper photometric and HI observations of ESO 364-G029, together with further decreasing systematic uncertainties, may provide a strong test to MOND.
9 pages, 5 figures, accepted for publication in the Astronomical Journal
References in corpus (7)
- THINGS about MOND
- Confrontation of MOND with the rotation curves of early-type disc galaxies
- Insight into the baryon-gravity relation in galaxies
- The shape of the dark matter halo in the early-type galaxy NGC 2974
- MOND rotation curves of very low mass spiral galaxies
- Testing MOND with Local Group spiral galaxies
- Optical BVI Imaging and HI Synthesis Observations of the Dwarf Irregular Galaxy ESO 364-G 029
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- Covariant formulation of refracted gravity
- Low-mass disc galaxies and the issue of stability: MOND vs dark matter
- Linearity: galaxy formation encounters an unanticipated empirical relation