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Cullan Howlett

Researcher at University of Queensland

Publications -  69
Citations -  7239

Cullan Howlett is an academic researcher from University of Queensland. The author has contributed to research in topics: Galaxy & Redshift. The author has an hindex of 23, co-authored 50 publications receiving 5808 citations. Previous affiliations of Cullan Howlett include Institute of Cosmology and Gravitation, University of Portsmouth & University of Sydney.

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The clustering of galaxies in the sdss-iii baryon oscillation spectroscopic survey: Baryon acoustic oscillations in the data release 9 spectroscopic galaxy sample

Lauren Anderson, +76 more
TL;DR: In this paper, the authors present a measurement of the cosmic distance scale from detections of the baryon acoustic oscillations in the clustering of galaxies from the Baryon Oscillation Spectroscopic Survey (BOSS), which is part of the Sloan Digital Sky Survey III (SDSS-III).
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Cosmological implications of baryon acoustic oscillation measurements

Éric Aubourg, +94 more
- 14 Dec 2015 - 
TL;DR: This paper derived constraints on cosmological parameters and tests of dark energy models from the combination of baryon acoustic oscillation (BAO) measurements with cosmic microwave background (CMB) data and a recent reanalysis of Type Ia supernova (SN) data.
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Galaxy and mass assembly (GAMA): End of survey report and data release 2

Jochen Liske, +81 more
TL;DR: The Galaxy And Mass Assembly (GAMA) survey as mentioned in this paper is one of the largest contemporary spectroscopic surveys of low redshift galaxies, covering an area of ∼286 deg2 (split among five survey regions) down to a limiting magnitude of r < 19.8 mag, and collecting spectra and reliable redshifts for 238'000 objects using the AAOmega spectrograph on the Anglo-Australian Telescope.
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CMB power spectrum parameter degeneracies in the era of precision cosmology

TL;DR: In this article, the authors study degeneracies in models with flat and non-flat spatial sections, non-trivial dark energy and massive neutrinos, and investigate the importance of various physical degeneracy-breaking effects.