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Photometric redshifts: estimating their contamination and distribution using clustering information

Benjamin, J. and Van Waerbeke, L. and M_s14enard, B. and Kilbinger, M.

Keywords

Astrophysics - Cosmology and Extragalactic Astrophysics

Abstract

We present a new technique to estimate the level of contamination between photometric redshift bins. If the true angular cross-correlation between redshift bins can be safely assumed to be zero, any measured cross-correlation is a result of contamination between the bins. We present the theory for an arbitrary number of redshift bins, and discuss in detail the case of two and three bins which can be easily solved analytically. We use mock catalogues constructed from the Millennium Simulation to test the method, showing that artificial contamination can be successfully recovered with our method. We find that degeneracies in the parameter space prohibit us from solving uniquely for the contamination, though constraints are made which can be improved with larger data sets. We then apply the method to an observational galaxy survey_s19 the deep component of the Canada France Hawaii Telescope Legacy Survey. We estimate the level of contamination between photometric redshift bins and demonstrate our ability to reconstruct both the true redshift distribution and the true average redshift of galaxies in each photometric bin.

Information

Published
2010 as article (english)
ArXiv e-prints,
Type
experimental work
Links
pdf
ads
adsabs.harvard.edu/a…
Related to the research area(s):
E
e-Print
1002.2266

Technische Universitaet Muenchen
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