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Cosmology from cosmic shear with Dark Energy Survey Science Verification data

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Title: Cosmology from cosmic shear with Dark Energy Survey Science Verification data
Authors: Abbott, T
Abdalla, FB
Allam, S
Amara, A
Annis, J
Armstrong, R
Bacon, D
Banerji, M
Bauer, AH
Baxter, E
Becker, MR
Benoit-Levy, A
Bernstein, RA
Bernstein, GM
Bertin, E
Blazek, J
Bonnett, C
Bridle, SL
Brooks, D
Bruderer, C
Buckley-Geer, E
Burke, DL
Busha, MT
Capozzi, D
Rosell, AC
Kind, MC
Carretero, J
Castander, FJ
Chang, C
Clampitt, J
Crocce, M
Cunha, CE
D'Andrea, CB
Da Costa, LN
Das, R
DePoy, DL
Desai, S
Diehl, HT
Dietrich, JP
Dodelson, S
Doel, P
Drlica-Wagner, A
Efstathiou, G
Eifler, TF
Erickson, B
Estrada, J
Evrard, AE
Fausti Neto, A
Fernandez, E
Finley, DA
Flaugher, B
Fosalba, P
Friedrich, O
Frieman, J
Gangkofner, C
Garcia-Bellido, J
Gaztanaga, E
Gerdes, DW
Gruen, D
Gruendl, RA
Gutierrez, G
Hartley, W
Hirsch, M
Honscheid, K
Huff, EM
Jain, B
James, DJ
Jarvis, M
Kacprzak, T
Kent, S
Kirk, D
Krause, E
Kravtsov, A
Kuehn, K
Kuropatkin, N
Kwan, J
Lahav, O
Leistedt, B
Li, TS
Lima, M
Lin, H
MacCrann, N
March, M
Marshall, JL
Martini, P
McMahon, RG
Melchior, P
Miller, CJ
Miquel, R
Mohr, JJ
Neilsen, E
Nichol, RC
Nicola, A
Nord, B
Ogando, R
Palmese, A
Peiris, HV
Plazas, AA
Refregier, A
Roe, N
Romer, AK
Roodman, A
Rowe, B
Rykoff, ES
Sabiu, C
Sadeh, I
Sako, M
Samuroff, S
Sanchez, E
Sanchez, C
Seo, H
Sevilla-Noarbe, I
Sheldon, E
Smith, RC
Soares-Santos, M
Sobreira, F
Suchyta, E
Swanson, MEC
Tarle, G
Thaler, J
Thomas, D
Troxel, MA
Vikram, V
Walker, AR
Wechsler, RH
Weller, J
Zhang, Y
Zuntz, J
Item Type: Journal Article
Abstract: We present the first constraints on cosmology from the Dark Energy Survey (DES), using weak lensing measurements from the preliminary Science Verification (SV) data. We use 139 square degrees of SV data, which is less than 3% of the full DES survey area. Using cosmic shear 2-point measurements over three redshift bins we find σ 8 ( Ω m / 0.3 ) 0.5 = 0.81 ± 0.06 (68% confidence), after marginalizing over 7 systematics parameters and 3 other cosmological parameters. We examine the robustness of our results to the choice of data vector and systematics assumed, and find them to be stable. About 20% of our error bar comes from marginalizing over shear and photometric redshift calibration uncertainties. The current state-of-the-art cosmic shear measurements from CFHTLenS are mildly discrepant with the cosmological constraints from Planck CMB data; our results are consistent with both data sets. Our uncertainties are ∼ 30 % larger than those from CFHTLenS when we carry out a comparable analysis of the two data sets, which we attribute largely to the lower number density of our shear catalogue. We investigate constraints on dark energy and find that, with this small fraction of the full survey, the DES SV constraints make negligible impact on the Planck constraints. The moderate disagreement between the CFHTLenS and Planck values of σ 8 ( Ω m / 0.3 ) 0.5 is present regardless of the value of w .
Issue Date: 6-Jul-2016
Date of Acceptance: 1-Jul-2016
URI: http://hdl.handle.net/10044/1/80262
DOI: 10.1103/PhysRevD.94.022001
ISSN: 1550-2368
Publisher: American Physical Society
Start Page: 022001 – 1
End Page: 022001 – 22
Journal / Book Title: Physical Review D: Particles, Fields, Gravitation and Cosmology
Volume: 94
Issue: 2
Copyright Statement: © 2016 American Physical Society
Keywords: Science & Technology
Physical Sciences
Astronomy & Astrophysics
Physics, Particles & Fields
Physics
MATTER POWER SPECTRUM
WEAK-LENSING TOMOGRAPHY
LARGE-SCALE STRUCTURE
BARYON ACOUSTIC-OSCILLATIONS
INTRINSIC ALIGNMENTS
PARAMETER CONSTRAINTS
GALAXY ELLIPTICITIES
PRECISION COSMOLOGY
COVARIANCE-MATRIX
HUBBLE CONSTANT
Science & Technology
Physical Sciences
Astronomy & Astrophysics
Physics, Particles & Fields
Physics
MATTER POWER SPECTRUM
WEAK-LENSING TOMOGRAPHY
LARGE-SCALE STRUCTURE
BARYON ACOUSTIC-OSCILLATIONS
INTRINSIC ALIGNMENTS
PARAMETER CONSTRAINTS
GALAXY ELLIPTICITIES
PRECISION COSMOLOGY
COVARIANCE-MATRIX
HUBBLE CONSTANT
astro-ph.CO
astro-ph.CO
Publication Status: Published
Article Number: ARTN 022001
Online Publication Date: 2016-07-06
Appears in Collections:Physics
Astrophysics