Globular cluster orbital decay in dwarf galaxies with MOND and CDM: Impact of supernova feedback
arXiv:2407.11139 · doi:10.1051/0004-6361/202449666
Abstract
Dynamical friction works very differently for Newtonian gravity with dark matter and in modified Newtonian dynamics (MOND). While the absence of dark matter considerably reduces the friction in major galaxy mergers, analytic calculations indicate the opposite for very small perturbations, such as globular clusters (GCs) sinking in dwarf galaxies. Here, we study the decay of GCs in isolated gas-rich dwarf galaxies using simulations with the Phantom of Ramses code, which enables both the Newtonian and the QUMOND MOND gravity. We modeled the GCs as point masses, and we simulated the full hydrodynamics, with star formation and supernovae feedback. We explored whether the fluctuations in gravitational potential caused by the supernovae can prevent GCs from sinking toward the nucleus. For GCs of typical mass or lighter, we find that this indeed works in both Newtonian and MOND simulations. The GC can even make a random walk. However, we find that supernovae cannot prevent massive GCs () from sinking in MOND. The resulting object looks similar to a galaxy with an offset core, which embeds the sunk GC. The problem is much milder in the Newtonian simulations. This result thus favors Newtonian over QUMOND gravity, but we note that it relies on the correctness of the difficult modeling of baryonic feedback. We propose that the fluctuations in the gravitational potential could be responsible for the thickness of the stellar disks of dwarf galaxies and that strong supernova winds in modified gravity can transform dwarf galaxies into ultra-diffuse galaxies.
19 pages, 14 figures, 8 tables. Accepted for publication in A&A
References in corpus (34)
- Ultralight scalars as cosmological dark matter
- A universal model for halo concentrations
- NIHAO XI: Formation of Ultra-Diffuse Galaxies by outflows
- On the onset of galactic winds in quiescent star forming galaxies
- NGC 3741: dark halo profile from the most extended rotation curve
- The rotation curves shapes of late-type dwarf galaxies
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- From galactic bars to the Hubble tension: weighing up the astrophysical evidence for Milgromian gravity
- THINGS about MOND
- Evolution of spiral galaxies in modified gravity
- Globular Cluster Systems in Nearby Dwarf Galaxies: I. HST/ACS Observations and Dynamical Properties of Globular Clusters at Low Environmental Density
- Extending the evolution of the stellar mass-size relation at to low stellar mass galaxies from HFF and CANDELS
- Phantom of RAMSES (POR): A new Milgromian dynamics N-body code
- Dynamical friction in modified Newtonian dynamics
- Star formation triggered by galaxy interactions in modified gravity
- 3D hydrodynamic simulations for the formation of the Local Group satellite planes
- The formation of exponential disk galaxies in MOND
- The global stability of M33 in MOND
- Cluster Ages to Reconstruct the Milky Way Assembly (CARMA) I. The final word on the origin of NGC6388 and NGC6441
- Gas-rich, field ultra-diffuse galaxies host few globular clusters
- Models of modified-inertia formulation of MOND
- Dwarf Galaxies in the Local Volume
- Probing the radial acceleration relation and the strong equivalence principle with the Coma cluster ultra-diffuse galaxies
- Spectroscopic Confirmation of the Sixth Globular Cluster in the Fornax Dwarf Spheroidal Galaxy
- The formation of early-type galaxies through monolithic collapse of gas clouds in Milgromian gravity
- The Phantom of RAMSES user guide for galaxy simulations using Milgromian and Newtonian gravity
- Bulge formation in disk galaxies with MOND
- Tripotential MOND theories
- Simulations of star forming main sequence galaxies in Milgromian gravity
- Hydrodynamical structure formation in Milgromian cosmology
- Generalizations of Quasilinear MOND (QUMOND)
- Relationships between the Stellar, Gaseous, and Star Formation Disks in LITTLE THINGS Dwarf Irregular Galaxies: Indirect Evidence for Substantial Fractions of Dark Molecular Gas
- The Kennicutt-Schmidt law and the main sequence of galaxies in Newtonian and Milgromian dynamics
- The formation of compact massive relic galaxies in MOND