Diagnostics of Baryonic Cooling in Lensing Galaxies
arXiv:1204.5749 · doi:10.1111/j.1365-2966.2012.21173.x
Abstract
Theoretical studies of structure formation find an inverse proportionality between the concentration of dark matter haloes and virial mass. This trend has been recently confirmed for virial masses Mvir > ~6e12 Msun by the observation of the X-ray emission from the hot halo gas. We present an alternative approach to this problem, exploring the concentration of dark matter haloes over galaxy scales on a sample of 18 early-type systems. Our c-Mvir relation is consistent with the X-ray analysis, extending towards lower virial masses, covering the range from ~4e11 Msun up to 5e12 Msun. A combination of the lensing analysis along with photometric data allows us to constrain the baryon fraction within a few effective radii, which is compared with prescriptions for adiabatic contraction (AC) of the dark matter haloes. We find that the standard methods for AC are strongly disfavored, requiring additional mechanisms -- such as mass loss during the contraction process -- to play a role during the phases following the collapse of the haloes.
12 pages, 9 figures, 2 tables. Accepted for publication in MNRAS
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Cited by in corpus (10)
- Systematic variations of central mass density slopes in early-type galaxies
- Strong Gravitational Lensing and the Stellar IMF of Early-type Galaxies
- The MUSE Extremely Deep Field: Evidence for SFR-induced cores in dark-matter dominated galaxies at z=1
- Light versus dark in strong-lens galaxies: Dark matter haloes that are rounder than their stars
- Dark Matter and IMF normalization in Virgo dwarf early-type galaxies
- The massive dark halo of the compact, early-type galaxy NGC 1281
- Models of gravitational lens candidates from Space Warps CFHTLS
- Observed versus Simulated Halo c-Mvir Relations
- Systematic variation of central mass density slope in early-type galaxies
- Reconciling concentration to virial mass relations