Effects of dynamical evolution on the distribution of substructures
arXiv:astro-ph/0412370 · doi:10.1111/j.1365-2966.2005.09633.x
Abstract
We develop a semi-analytical model that determines the evolution of the mass, position and internal structure of dark matter substructures orbiting in dark matter haloes. We apply this model to the case of the Milky Way. We focus in particular on the effects of mass loss, dynamical friction and substructure--substructure interactions, the last of which has previously been ignored in analytic models of substructure evolution. Our semi-analytical treatment reproduces both the spatial distribution of substructures and their mass function as obtained from the most recent N-body cosmological calculations of Gao et al. (2004). We find that, if mass loss is taken into account, the present distribution of substructures is practically insensitive to dynamical friction and scatterings from other substructures. Implementing these phenomena leads to a slight increase (~5%) in the number of substructures at r<0.35 r_vir, whereas their effects on the mass function are negligible. We find that mass loss processes lead to the disruption of substructures before dynamical friction and gravitational scattering can significantly alter their orbits. Our results suggest that the present substructure distribution at r>0.35 r_vir reflects the orbital properties at infall and is, therefore, purely determined by the dark matter environment around the host halo and has not been altered by dynamical evolution.
Submitted to MNRAS. 13 pages, 9 figures
References in corpus (2)
Cited by in corpus (52)
- The Tidal Evolution of Local Group Dwarf Spheroidals
- Disruption of Dark Matter Substructure: Fact or Fiction?
- Dark Matter Substructure in Numerical Simulations: A Tale of Discreteness Noise, Runaway Instabilities, and Artificial Disruption
- The impact of dark matter cusps and cores on the satellite galaxy population around spiral galaxies
- Shredded Galaxies as the Source of Diffuse Intrahalo Light On Varying Scales
- The First Three Seconds: a Review of Possible Expansion Histories of the Early Universe
- The Excursion Set Theory of Halo Mass Functions, Halo Clustering, and Halo Growth
- The coupling between the core/cusp and missing satellite problems
- The Galaxy and its stellar halo: insights on their formation from a hybrid cosmological approach
- The Cold Dark Matter Halos of Local Group Dwarf Spheroidals
- A unified model for the spatial and mass distribution of subhaloes
- The Signature of Galactic Tides in Local Group Dwarf Spheroidals
- The Fate of Substructures in Cold Dark Matter Haloes
- Dynamical Evolution of Globular Clusters in Hierarchical Cosmology
- The asymptotic tidal remnants of cold dark matter subhalos
- Close Galaxy Counts as a Probe of Hierarchical Structure Formation
- Modeling evolution of dark matter substructure and annihilation boost
- Tidal disruption of fuzzy dark matter subhalo cores
- The tidal evolution of dark matter substructure -- II. The impact of artificial disruption on subhalo mass functions and radial profiles
- Core-collapse, evaporation and tidal effects: the life story of a self-interacting dark matter subhalo
- The tidal evolution of dark matter substructure -- I. Subhalo density profiles
- Modeling Tidal Streams in evolving dark matter halos
- On mini-halo encounters with stars
- Orbital evolution of the Carina dwarf galaxy and self-consistent star formation history determination
- Nonlinear evolution of dark matter subhalos and applications to warm dark matter
- A Cosmic Coincidence: The Power-Law Galaxy Correlation Function
- DASH: a library of dynamical subhalo evolution
- A Halo Expansion (HEX) Technique for Approximating Simulated Dark Matter Haloes
- The Importance of Interactions for Mass Loss from Satellite Galaxies in Cold Dark Matter Haloes
- Constraining Satellite Galaxy Stellar Mass Loss and Predicting Intrahalo Light I: Framework and Results at Low Redshift
- Comprehensive Assessment of the Too-Big-to-Fail Problem
- Mass loss in tidally stripped systems; the energy-based truncation method
- Tidal Stripping in the Adiabatic Limit
- Tidal evolution of dark matter annihilation rates in subhalos
- Galaxy subgroups in galaxy clusters
- Evolution of dark matter microhalos through stellar encounters
- On the orbital and internal evolution of cluster galaxies
- Dynamical self-friction: how mass loss slows you down
- Orbital dynamics and histories of satellite galaxies around Milky Way-mass galaxies in the FIRE simulations
- A new calibration method of sub-halo orbital evolution for semi-analytic models
- Dark Matter Halo Mergers I: Dependence on Environment & Redshift Evolution
- Remnants of Galactic subhalos and their impact on indirect dark matter searches
- Evolution of subhalo orbits in a smoothly-growing host halo potential
- Micro galaxies in LCDM
- An Accurate Comprehensive Approach to Substructure: I. Accreted Subhaloes
- Tracking the orbit of unresolved subhalos for semi-analytic models
- An Accurate Comprehensive Approach to Substructure: III. Masses and Formation Times of the Host Haloes
- An Accurate Comprehensive Approach to Substructure: II. Stripped Subhaloes
- Constraints on the angular distribution of satellite galaxies about spiral hosts
- Machine Learning the Fates of Dark Matter Subhalos: A Fuzzy Crystal Ball
- Semi-analytical frameworks for subhalos from the smallest to the largest scale
- An Accurate Comprehensive Approach to Substructure: IV. Dynamical Friction