2006/10/31 by Stéphane Courteau, Stephane Courteau, Michael McDonald +2
Physics and Astronomy · #Astronomy and Astrophysical Research #Connection (principal bundle) #Correlation function (quantum field theory) #Dark matter #Dwarf galaxy #Elliptical galaxy #Galaxies: Formation, Evolution, Phenomena #Galaxy #Galaxy formation and evolution #Lenticular galaxy #Scaling #Statistical Mechanics and Entropy #astro-ph
paper · pdf · doi:10.1086/511524
published as Astrophys.J.655:L21-L24,2007 · Accepted for publication in ApJL. Current version matches ApJL page requirement
arxiv created 2006/11/01 · openalex publication_date 2007/01/10 · arxiv updated 2011/02/11 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05
We explore the dependence of the ratio of a galaxy's maximum circular velocity, V c , to its central velocity dispersion, σ 0 , on morphology or, equivalently, total light concentration. Such a dependence is expected if light traces the mass. Over the full range of galaxy types, masses, and brightnesses, and assuming that the gas velocity traces the circular velocity, we find that galaxies obey the relation log( V c /σ 0 ) = 0.63 - 0.11 C 28 , where C 28 = 5 log( r 80 / r 20 ) and the radii are measured at 80% and 20% of the total light. Massive galaxies scatter about the V c = σ 0 line for isothermal stellar systems. For pure disks, C 28 ~ 2.8 and V c ≃ 2σ 0 . Self-consistent equilibrium galaxy models from Widrow & Dubinski constrained to match the size-luminosity and velocity-luminosity relations of disk galaxies fail to match the observed V c /σ 0 distribution. Furthermore, the matching of dynamical models for V c ( r )/σ( r ) with observations of dwarf and elliptical galaxies suffers from limited radial coverage and relatively large error bars; for dwarf systems, however, kinematical measurements at the galaxy center and optical edge suggest V c ( R max ) ≳ 2σ 0 [in contrast with past assumptions that V c ( R max ) = σ 0 for dwarfs]. The V c -σ 0 - C 28 relation has direct implications for galaxy formation and dynamical models, galaxy scaling relations, the mass function of galaxies, and the links between the formation and evolution processes of a galaxy's central massive object, bulge, and dark matter halo.