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The WiggleZ Dark Energy Survey: small-scale clustering of Lyman-break galaxies at z < 1.

Authors :
Blake, Chris
Jurek, Russell J.
Brough, Sarah
Colless, Matthew
Couch, Warrick
Croom, Scott
Davis, Tamara
Drinkwater, Michael J.
Forbes, Duncan
Glazebrook, Karl
Madore, Barry
Martin, Chris
Pimbblet, Kevin
Poole, Gregory B.
Pracy, Michael
Sharp, Rob
Small, Todd
Woods, David
Source :
Monthly Notices of the Royal Astronomical Society. May2009, Vol. 395 Issue 1, p240-254. 15p. 1 Chart, 20 Graphs.
Publication Year :
2009

Abstract

The WiggleZ Dark Energy Survey is a large-scale structure survey of intermediate-redshift ultraviolet-selected (UV-selected) emission-line galaxies scheduled to cover 1000 deg2, spanning a broad redshift range . The main scientific goal of the survey is the measurement of baryon acoustic oscillations (BAO) in the galaxy clustering pattern at a significantly higher redshift than previous studies. The BAO may be applied as a standard cosmological ruler to constrain dark energy models. Based on the first 20 per cent of the data set, we present initial results concerning the small-scale clustering of the WiggleZ targets, together with survey forecasts. The WiggleZ galaxy population possesses a clustering length Mpc, which is significantly larger than UV-selected samples, with a slope . This clustering length is comparable to Lyman-break galaxies with similar UV luminosities. The clustering strength of the sample increases with optical luminosity, UV luminosity and reddening rest-frame colour. The full survey, scheduled for completion in 2010, will map an effective volume Gpc3 (evaluated at a scale ) and will measure the angular diameter distance and Hubble expansion rates in three redshift bins with accuracies of ≈5 per cent. We will determine the value of a constant dark energy equation-of-state parameter, wcons, with a higher precision than existing supernovae observations using an entirely independent technique. The WiggleZ and supernova measurements lie in highly complementary directions in the plane of wcons and the matter density Ωm. The forecast using the full combination of WiggleZ, supernova and cosmic microwave background (CMB) data sets is a marginalized error , providing a robust and precise measurement of the properties of dark energy including cross-checking of systematic errors. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00358711
Volume :
395
Issue :
1
Database :
Academic Search Index
Journal :
Monthly Notices of the Royal Astronomical Society
Publication Type :
Academic Journal
Accession number :
37380456
Full Text :
https://doi.org/10.1111/j.1365-2966.2009.14447.x