Fitting optical source counts with an infrared-defined model: insights into galaxy evolution
A. J. King, M. Rowan-Robinson
Abstract
In order to improve the fit to the optical counts, the multi-wavelength source count model of Rowan-Robinson (2001) is improved in two ways. First, density evolution is incorporated to correspond to the mergers in hierarchical models of galaxy formation. Secondly, the evolution of dust opacity is taken into account. The luminosity and density evolution parameters and the characteristic opacity of the local universe are allowed to vary freely and the best overall fit to the B band is determined. This parameter set is then translated to other wavebands, showing significant improvement of goodness of fit in the optical, UV and near-IR bands, whilst retaining the goodness of fit in the far-IR and submillimetre bands of the original model. A significant fraction of the improvement of fit is shown to be due to the introduction of optical depth history. The mean value of Av in the local universe for the best-fitting model is 0.4. The goodness of fit to available star formation history data is not significantly altered and the form of the evolution of the luminosity function shown to be consistent with a semi-analytic, forward evolution model.
Create a lesson
Related papers
On binary pulsars and the force of gravity
Davor Palle
Tidal torques. A critical review of some techniques
Michael Efroimsky, James G. Williams
Dynamics of a Spherical Accretion Shock with Neutrino Heating and Alpha-Particle Recombination
Rodrigo Fernández, Christopher Thompson
Asymptotically FRW black holes
J. T. Firouzjaee, Reza Mansouri
Reaction of Accretion Disks to Abrupt Mass Loss During Binary Black Hole Merger
Sean M. O'Neill, M. Coleman Miller, Tamara Bogdanovic et al.
A Gamma-Ray Burst/Pulsar for Cosmic-Ray Positrons with a Dark Matter-like Spectrum
Kunihito Ioka