The Relevance of Dynamical Friction for the MW/LMC/SMC Triple System
arXiv:2403.17999 · doi:10.3390/universe10030143
Abstract
Simulations of structure formation in the standard cold dark matter cosmological model quantify the dark matter halos of galaxies. Taking into account dynamical friction between the dark matter halos, we investigate the past orbital dynamical evolution of the Magellanic Clouds in the presence of the Galaxy. Our calculations are based on a three-body model of rigid Navarro-Frenk-White profiles for the dark matter halos, but were verified in a previous publication by comparison to high-resolution N-body simulations of live self-consistent systems. Under the requirement that the LMC and SMC had an encounter within 20 kpc between 1 and 4 Gyr ago, in order to allow the development of the Magellanic Stream, and using the latest astrometric data, the dynamical evolution of the MW/LMC/SMC system is calculated backwards in time. With the employment of the genetic algorithm and a Markov-Chain Monte-Carlo method, the present state of this system is unlikely with a probability of <10^{-9} (6 sigma complement), because solutions found do not fit into the error bars for the observed plane-of-sky velocity components of the Magellanic Clouds. This implies that orbital solutions that assume dark matter halos according to cosmological structure formation theory to exist around the Magellanic Clouds and the Milky Way are not possible with a confidence of more than 6 sigma
LaTeX, 21 pages, 5 figures, 12 tables, published by Universe
References in corpus (15)
- An eclipsing binary distance to the Large Magellanic Cloud accurate to 2 per cent
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- The Structure of Halos: Implications for Group and Cluster Cosmology
- Fast galaxy bars continue to challenge standard cosmology
- Dark matter or correlated errors: Systematics of the AMS-02 antiproton excess
- Star formation triggered by galaxy interactions in modified gravity
- The Dynamics of Subhalos in Warm Dark Matter Models
- The Magellanic Corona and the formation of the Magellanic Stream
- First Gaia Local Group Dynamics: Magellanic Clouds Proper Motion and Rotation
- Toward a Complete Understanding of the Magellanic Stream Formation
- The formation of exponential disk galaxies in MOND
- 3D hydrodynamic simulations for the formation of the Local Group satellite planes
- Constraints on the dynamical evolution of the galaxy group M81
- The formation of early-type galaxies through monolithic collapse of gas clouds in Milgromian gravity
- Hydrodynamical structure formation in Milgromian cosmology