Fornax dwarf spheroidal in MOND: its formation and the survival of its globular clusters
Michal B\'ilek, Hongsheng Zhao

TL;DR
This study uses high-resolution N-body simulations to explore the formation and globular cluster survival of the Fornax dwarf galaxy within the MOND framework, revealing a plausible evolutionary scenario consistent with observations.
Contribution
It demonstrates that MOND can account for Fornax's globular clusters, stellar halo, and star formation history, providing new insights into dwarf galaxy dynamics without dark matter.
Findings
20% probability of five unsunk GCs in Fornax
Reproduction of Fornax's stellar halo and star formation peaks
Prediction of a detectable stellar stream in Fornax
Abstract
The Fornax dwarf spheroidal galaxy has five massive globular clusters (GCs). They are often used for testing different dark matter and modified gravity theories, because it is difficult to reconcile their old stellar ages with the short time they need to settle in the center of the galaxy due to dynamical friction. Using high resolution -body simulations with the Phantom of Ramses code, we investigate whether the GCs of Fornax can be reconciled with the modified Newtonian dynamics (MOND), namely its QUMOND formulation. Observational data interpreted in MOND indicate that Fornax is a tidal dwarf galaxy formed at redshift in a flyby of the Milky Way (MW) and Andromeda galaxies, and that its GCs were initially massive star clusters in the disk of the MW. This helps us to set up and interpret the simulations. In the simulations, a point-mass GC orbits Fornax, and they both orbit…
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Taxonomy
TopicsGeophysics and Gravity Measurements · Geological and Geophysical Studies · Physics of Superconductivity and Magnetism
