1995The Astrophysical JournalRequires access

Structural Parameters of Faint Galaxies from Prerefurbishment Hubble Space Telescope Medium Deep Survey Observations

Stefano Casertano, K. U. Ratnatunga, R. E. Griffiths, Myungshin Im, L. W. Neuschaefer, E. J. Ostrander, Rogier A. Windhorst

Open publisher page 47 citations

Abstract

We present a statistical study of the properties of faint galaxies from a large catalog of about 13,500 objects found in 112 random fields observed with the Hubble Space Telescope Wide Field Camera before refurbishment. The majority of the objects are faint galaxies with 18 < I < 25 mag. For each object we determine half-light radius, magnitude, color, and a crude classification based on the object's luminosity profile, by fitting two-dimensional models to undeconvolved images. The catalog is better than 80% complete to a depth ranging between I ∼ 21 mag for the shortest exposures (0.5 hr), up to 23.8 for the longest exposure (about 5 hr). Number counts in the range 18 20 mag. Typical half-light radii of faint galaxies are somewhat smaller than spirals. Half-light radius is not correlated with (V - I) color for I ≲ 21 mag; at fainter magnitudes, a weak correlation in the sense of larger galaxies being redder is marginally detected.

About this research paper

What this paper is about

We present a statistical study of the properties of faint galaxies from a large catalog of about 13,500 objects found in 112 random fields observed with the Hubble Space Telescope Wide Field Camera before refurbishment. The majority of the objects are faint galaxies with 18 < I < 25 mag. For each object we determine half-light radius, magnitude, color, and a crude classification based on the object's luminosity profile, by fitting two-dimensional models to undeconvolved images. The catalog is better than 80% complete to a depth ranging between I ∼ 21 mag for the shortest exposures (0.5 hr), up to 23.8 for the longest exposure (about 5 hr). Number counts in the range 18 20 mag. Typical half-light radii of faint galaxies are somewhat smaller than spirals. Half-light radius is not correlated with (V - I) color for I ≲ 21 mag; at fainter magnitudes, a weak correlation in the sense of larger galaxies being redder is marginally detected.

Why it matters

OpenAlex reports 47 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We present a statistical study of the properties of faint galaxies from a large catalog of about 13,500 objects found in 112 random fields observed with the Hubble Space Telescope Wide Field Camera before refurbishment. The majority of the objects are faint galaxies with 18 < I < 25 mag. For each object we determine half-light radius, magnitude, color, and a crude classification based on the object's luminosity profile, by fitting two-dimensional models to undeconvolved images. The catalog is better than 80% complete to a depth ranging between I ∼ 21 mag for the shortest exposures (0.5 hr), up to 23.8 for the longest exposure (about 5 hr). Number counts in the range 18 20 mag. Typical half-light radii of faint galaxies are somewhat smaller than spirals. Half-light radius is not correlated with (V - I) color for I ≲ 21 mag; at fainter magnitudes, a weak correlation in the sense of larger galaxies being redder is marginally detected.

Key concepts: Physics, Astrophysics, Galaxy, Astronomy, Luminosity, Advanced Camera for Surveys, Hubble Ultra-Deep Field, Stars

Related papers

Back to paper searchBrowse research topicsOriginal source
Structural Parameters of Faint Galaxies from Prerefurbishment Hubble Space Telescope Medium Deep Survey Observations — Research Paper | ScholarLens