Swinburne
Browse

Total galaxy magnitudes and effective radii from Petrosian magnitudes and radii

Download (1.39 MB)
journal contribution
posted on 2024-07-11, 12:11 authored by Alister GrahamAlister Graham, Simon P. Driver, Vahé Petrosian, Christopher J. Conselice, Matthew A. Bershady, Steven M. Crawford, Tomotsugu Goto
Petrosian magnitudes were designed to help with the difficult task of determining a galaxy's total light. Although these magnitudes [taken here as the flux within 2RP, with the inverted Petrosian index 1/η(RP) = 0.2] can represent most of an object's flux, they do of course miss the light outside the Petrosian aperture (2RP). The size of this flux deficit varies monotonically with the shape of a galaxy's light profile, i.e., its concentration. In the case of a de Vaucouleurs R1/4 profile, the deficit is 0.20 mag; for an R1/8 profile this figure rises to 0.50 mag. Here we provide a simple method for recovering total (Sérsic) magnitudes from Petrosian magnitudes using only the galaxy concentration (R90/R50 or R80/R20) within the Petrosian aperture. The corrections hold to the extent that Sérsic's model provides a good description of a galaxy's luminosity profile. We show how the concentration can also be used to convert Petrosian radii into effective half-light radii, enabling a robust measure of the mean effective surface brightness. Our technique is applied to the Sloan Digital Sky Survey Data Release 2 (SDSS DR2) Petrosian parameters, yielding good agreement with the total magnitudes, effective radii, and mean effective surface brightnesses obtained from the New York University Value-Added Galaxy Catalog Sérsic R1/n fits by Blanton and coworkers. Although the corrective procedure described here is specifically applicable to the SDSS DR2 and DR3, it is generally applicable to all imaging data where any Petrosian index and concentration can be constructed.

Funding

The First Deep Infrared Study of the Nearby Galaxy Population

Australian Research Council

Find out more...

History

Available versions

PDF (Published version)

ISSN

0004-6256

Journal title

Astronomical Journal

Volume

130

Issue

4

Pagination

9 pp

Publisher

University of Chicago

Copyright statement

Copyright © 2005 The American Astronomical Society. Paper is reproduced in accordance with the copyright policy of the publisher.

Language

eng

Usage metrics

    Publications

    Categories

    No categories selected

    Keywords

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC