Contradiction between strong lensing statistics and a feedback solution to the cusp/core problem
arXiv:0808.0225 · doi:10.1088/1674-4527/10/12/003
Abstract
Standard cosmology has many successes on large scales, but faces some fundamental difficulties on small, galactic scales. One such difficulty is the cusp/core problem. High resolution observations of the rotation curves for dark matter dominated low surface brightness (LSB) galaxies imply that galactic dark matter halos have a density profile with a flat central core, whereas N-body structure formation simulations predict a divergent (cuspy) density profile at the center. It has been proposed that this problem can be resolved by stellar feedback driving turbulent gas motion that erases the initial cusp. However, strong gravitational lensing prefers a cuspy density profile for galactic halos. In this paper, we use the most recent high resolution observations of the rotation curves of LSB galaxies to fit the core size as a function of halo mass, and compare the resultant lensing probability to the observational results for the well defined combined sample of the Cosmic Lens All-Sky Survey (CLASS) and Jodrell Bank/Very Large Array Astrometric Survey (JVAS). The lensing probabilities based on such density profiles are too low to match the observed lensing in CLASS/JVAS. High baryon densities in the galaxies that dominate the lensing statistics can reconcile this discrepancy, but only if they steepen the mass profile rather than making it more shallow. This places contradictory demands upon the effects of baryons on the central mass profiles of galaxies.
8 pages, 3 figures. Largely improved compared with the version 1 to reflect the referees' reports, conclusions unchanged. Published in Research in Astronomy and Astrophysics (RAA)
References in corpus (12)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- At the heart of the matter: the origin of bulgeless dwarf galaxies and Dark Matter cores
- Stellar Feedback in Dwarf Galaxy Formation
- The Universal Rotation Curve of Spiral Galaxies. II The Dark Matter Distribution out to the Virial Radius
- Mass Models for Low Surface Brightness Galaxies with High Resolution Optical Velocity Fields
- Cosmological puzzle resolved by stellar feedback in high redshift galaxies
- Internal and Collective Properties of Galaxies in the Sloan Digital Sky Survey
- High Resolution Optical Velocity Fields of 11 Low Surface Brightness Galaxies
- The Rotation Velocity Attributable to Dark Matter at Intermediate Radii in Disk Galaxies
- The Sloan Digital Sky Survey Quasar Lens Search. III. Constraints on Dark Energy from the Third Data Release Quasar Lens Catalog
- Strong lensing probability in TeVeS theory
- Cusp-core problem and strong gravitational lensing