English

An Elliptical Galaxy Luminosity Function and Velocity Dispersion Sample of Relevance for Gravitational Lensing Statistics

Astrophysics 2009-10-31 v2

Abstract

We have selected 42 elliptical galaxies from the literature and estimated their velocity dispersions at the effective radius (σ\re\sigma_{\re}) and at 0.54 effective radii (\vff\vff). We find by a dynamical analysis that the normalized velocity dispersion of the dark halo of an elliptical galaxy \vdm\vdm is roughly σ\re\sigma_{\re} multiplied by a constant, which is almost independent of the core radius or the anisotropy parameter of each galaxy. Our sample analysis suggests that \vdm\vdm^{*} lies in the range 178-198 km s1^{-1}. The power law relation we find between the luminosity and the dark matter velocity dispersion measured in this way is (L/L)=(\vdm/\vdm)γ(L/L^{*}) = (\vdm/\vdm^{*})^\gamma, where γ\gamma is between 2-3. These results are of interest for strong gravitational lensing statistics studies. In order to determine the value of \vdm\vdm^{*}, we calculate \mstar\mstar in the same \bt\bt band in which \vdm\vdm^{*} has been estimated. We select 131 elliptical galaxies as a complete sample set with apparent magnitudes \bt\bt between 9.26 and 12.19. We find that the luminosity function is well fitted to the Schechter form, with parameters \mstar\mstar = -19.66 + 5log10h±0.30\cdot\log_{10}h \pm 0.30, α=0.15±0.55\alpha = 0.15 \pm 0.55, and the normalization constant ϕ=(1.34±0.30)×103h3\phi^{*} = (1.34 \pm 0.30) \times 10^{-3} h^{3} Mpc3^{-3}, with the Hubble constant \hnot\hnot = 100 hh km s1^{-1} Mpc1^{-1}. This normalization implies that morphology type E galaxies make up (10.8 ±\pm 1.2) per cent of all galaxies.

Keywords

Cite

@article{arxiv.astro-ph/9908292,
  title  = {An Elliptical Galaxy Luminosity Function and Velocity Dispersion Sample of Relevance for Gravitational Lensing Statistics},
  author = {Yu-Chung N. Cheng and Lawrence M. Krauss},
  journal= {arXiv preprint arXiv:astro-ph/9908292},
  year   = {2009}
}

Comments

18 pages latex, with ps figs included. accepted by New Astronomy (revised to incorporate referees comments)