The Peculiar Motions of Early-Type Galaxies in Two Distant Regions VI: The Maximum Likelihood Gaussian Algorithm
arXiv:astro-ph/0012456 · doi:10.1046/j.1365-8711.2001.04317.x
Abstract
The EFAR project is designed to measure the properties and peculiar motions of early-type galaxies in two distant regions. Here we describe the maximum likelihood algorithm we developed to investigate the correlations between the parameters of the EFAR database. One-, two-, and three-dimensional gaussian models are constructed to determine the mean value and intrinsic spread of the parameters, and the slopes and intrinsic parallel and orthogonal spread of the Mgb'-Mg2, Mg2-sigma, Mgb'-sigma relations, and the Fundamental Plane. In the latter case, the cluster peculiar velocities are also determined. We show that this method is superior to ``canonical'' approaches of least-squares type, which give biased slopes and biased peculiar velocities. We test the algorithm with Monte Carlo simulations of mock EFAR catalogues and derive the systematic and random errors on the estimated parameters. We find that random errors are always dominant. We estimate the influence of systematic errors due to the way clusters were selected and the hard limits and uncertainties in the selection function parameters for the galaxies. We explore the influence of uniform distributions in the Fundamental Plane parameters and the errors. We conclude that the mean peculiar motions of the EFAR clusters can be determined reliably. In particular, the placement of the two EFAR sample regions relative to the Lauer and Postman dipole allows us to strongly constrain the amplitude of the bulk motion in this direction.
43 pages, 19 figures, accepted for publication in MNRAS
Cited by in corpus (31)
- Early-type galaxies in the SDSS. III. The Fundamental Plane
- Early-type galaxies in the SDSS. II. Correlations between observables
- Early-type galaxies in the SDSS. I. The sample
- BUDDA: A New Two-Dimensional Bulge/Disk Decomposition Code for Detailed Structural Analysis of Galaxies
- The 6dF Galaxy Survey: Peculiar Velocity Field and Cosmography
- Curvature in the scaling relations of early-type galaxies
- The luminosity and stellar mass Fundamental Plane of early-type galaxies
- The fundamental plane of EDisCS galaxies - The effect of size evolution
- The 6dF Galaxy Survey: The Near-Infrared Fundamental Plane of Early-Type Galaxies
- The SAURON Project - XIX. Optical and near-infrared scaling relations of nearby elliptical, lenticular and Sa galaxies
- SPIDER II - The Fundamental Plane of Early-type Galaxies in grizYJHK
- The Sloan Digital Sky Survey Peculiar Velocity Catalogue
- The Fundamental Relation between Supermassive Black Holes and Their Host Galaxies
- Further evidence for large central mass-to-light ratios in early-type galaxies: the case of ellipticals and lenticulars in the Abell~262 cluster
- The 6dF Galaxy Survey: Stellar Population Trends Across and Through the Fundamental Plane
- Redshift-distance Survey of Early-type Galaxies: The D_n-sigma Relation
- The sigma - L correlation in Nearby Early-Type Galaxies
- DESI Peculiar Velocity Survey -- Fundamental Plane
- The Stellar Mass Fundamental Plane: The virial relation and a very thin plane for slow-rotators
- The Fundamental Planes of E+A galaxies and GALEX UV-excess early-type galaxies: Revealing their intimate connection
- Clues on Regularity in the Structure and Kinematics of Elliptical Galaxies from Self-consistent Hydrodynamical Simulations: the Dynamical Fundamental Plane
- Plain fundamentals of Fundamental Planes: Analytics and algorithms
- Large-scale motions and growth rate from forward-modelling Tully-Fisher peculiar velocities
- Clues on the Physical Origin of the Fundamental Plane from Self-consistent Hydrodynamical Simulations
- Data and 2D scaling relations for galaxies in Abell 1689: a hint of size evolution at z~0.2
- The Fundamental Plane of cluster spheroidal galaxies at z. Evidence for mass-dependent evolution
- Galaxy And Mass Assembly (GAMA): Stellar-to-Dynamical Mass Relation I. Constraining the Precision of Stellar Mass Estimates
- The Fundamental Plane Is Not a Plane: Warped Nature of the Fundamental Plane of Early-type Galaxies and Its Implication for Galaxy Formation
- The hyperplane of early-type galaxies: using stellar population properties to increase the precision and accuracy of the fundamental plane as a distance indicator
- A probabilistic framework for cosmological inference of peculiar velocities
- Is there a tilt in the fundamental (hyper)plane?