Paper
3 March 2008 Multi-channel 2D photometry with super-resolution in far UV astronomical images using priors in visible bands
A. Llebaria, B. Magnelli, S. Arnouts, A. Pollo, B. Milliard, M. Guillaume
Author Affiliations +
Proceedings Volume 6812, Image Processing: Algorithms and Systems VI; 68121F (2008) https://doi.org/10.1117/12.770302
Event: Electronic Imaging, 2008, San Jose, California, United States
Abstract
Photometry of crowded fields is an old theme of astronomical image processing. Large space surveys in the UV (ultraviolet), like the GALEX mission (135-175 nm and 170-275 nm range), confronts us again with challenges like, very low light levels, poor resolution, variable stray-light in background, the extended and badly known PSFs (point spread functions), etc. However the morphological similitude of these UV images to their counterparts in the visible bands, suggests that we use all this high resolution data as the starting reference for the UV analysis. We choose the Bayesian approach. However there is not a straightforward way leading from the basic idea to its practical implementation. We will describe in this paper the path which starts with the original procedure (presented in a previous paper) and ends on the useful one. After a brief recall on the Bayesian method, we describe the process applied to restore from the UV images the point spread function (PSF) and the background due to stray-light. In the end we display the photometric performances reached for each channel and we discuss the consequences of the imperfect knowledge of background, the inaccuracy on object centring and on the PSF model. Results show a clear improvement by more than 2 mag on the magnitude limit and in the completeness of the measured objects relative to classical methods (it corresponds to more than 75000 new objects per GALEX field, i.e. approx 25% more). The simplicity of the Bayesian approach eased the analysis as well as the corrections needed in order to obtain a useful and reliable photometric procedure.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
A. Llebaria, B. Magnelli, S. Arnouts, A. Pollo, B. Milliard, and M. Guillaume "Multi-channel 2D photometry with super-resolution in far UV astronomical images using priors in visible bands", Proc. SPIE 6812, Image Processing: Algorithms and Systems VI, 68121F (3 March 2008); https://doi.org/10.1117/12.770302
Lens.org Logo
CITATIONS
Cited by 2 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Point spread functions

Ultraviolet radiation

Astronomy

Photometry

Visible radiation

Expectation maximization algorithms

Image processing

Back to Top