Formation of cuspy density profiles - a generic feature of collisionless gravitational collapse
arXiv:astro-ph/0005566 · doi:10.1086/312928
Abstract
Using the formalism of the spherical infall model the structure of collapsed and virialized dark halos is calculated for a variety of scale-free initial conditions. In spite of the scale-free cosmological nature of the problem, the collapse of individual objects is not self-similar. Unlike most of previous calculations the dynamics used here relies only on adiabatic invariants and not on self-similarity. The paper focuses on the structure of the innermost part of the collapsed halos and addresses the problem of central density cusps. The slopes of density profiles at 1% of virial radius are calculated for a variety of cosmological models and are found to vary with the mass of the halos and power spectrum of the initial conditions. The inner slopes range between r^-2.3 and r^-2 with the limiting case of r^-2 reached for the largest masses. The steep cusps found here correspond to the limiting case where all particles move on radial orbits. The introduction of angular momentum will make the density profile shallower. We expect this to resolve the discrepancy found between the calculated profiles and the ones found in high resolution N-body simulations, where the exponent ranges from -0.5 to -1.5. The robust prediction here is that collisionless gravitational collapse in an expanding universe is expected to form density cups and not halos with a core structure.
4 pages, 4 figures, uses emulateapj5.sty, revised version accepted by ApJL (one new figure added, model described in more detail)
References in corpus (2)
Cited by in corpus (32)
- Dark Halos: The Flattening of the Density Cusp by Dynamical Friction
- Properties of spherical galaxies and clusters with an NFW density profile
- The Phase-Space Density Profiles of Cold Dark Matter Halos
- On the physical origin of dark matter density profiles
- Dark matter distribution in dwarf spheroidal galaxies
- Galactic halo cusp-core: tidal compression in mergers
- Investigating the Origins of Dark Matter Halo Density Profiles
- Formation and Evolution of the Self-Interacting Dark Matter Halos
- Self-similar spherical collapse with non-radial motions
- A Cusp Slope -- Central Anisotropy Theorem
- Stellar Bar Evolution in Cuspy and Flat-Cored Triaxial CDM Halos
- Non-radial motion and the NFW profile
- The Three Hundred Project: The evolution of galaxy cluster density profiles
- Density profiles in a spherical infall model with non-radial motions
- Dark-Halo Cusp: Asymptotic Convergence
- Dark matter density profiles from the Jeans equation
- Evolution of Phase-Space Density in Dark Matter Halos
- Probing the Core Structure of Dark Halos with Tangential and Radial Arc Statistics
- Predicting the density profiles of the first halos
- On the Origin of the Inner Structure of Halos
- Secondary infall and dark matter haloes
- Velocity dispersion profile in dark matter halos
- Non--power law behavior of the radial profile of phase--space density of halos
- Evolution of Characteristic Quantities for Dark Matter Halo Density Profiles
- Theoretical dark matter halo density profile
- Constrained Cosmological Simulations of Dark Matter Halos
- The effects of Non-Gaussian initial conditions on the structure and substructure of Cold Dark Matter halos
- Galaxy Formation in Triaxial Halos: Black Hole-Bulge-Dark Halo Correlation
- Detailed theoretical predictions of the outskirts of dark matter halos
- Density Profile Asymptotes at the Centre of Dark Matter Halos
- The spherical collapse model with shell crossing
- Self-similarity of the mass distribution in rich galaxy clusters up z~1 tracked with weak lensing