Dark Energy Survey Year 1 Results: Cosmological Constraints from Cluster Abundances and Weak Lensing

dc.contributor.author

Abbott, TMC

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Aguena, M

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Alarcon, A

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Allam, S

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Allen, S

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Annis, J

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Avila, S

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Bacon, D

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Bechtol, K

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Bermeo, A

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Bernstein, GM

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Bertin, E

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Bhargava, S

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Bocquet, S

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Brooks, D

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Brout, D

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Buckley-Geer, E

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Burke, DL

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Carnero Rosell, A

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Carrasco Kind, M

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Carretero, J

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Castander, FJ

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Cawthon, R

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Chang, C

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Chen, X

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Choi, A

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Costanzi, M

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Crocce, M

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da Costa, LN

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Davis, TM

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De Vicente, J

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DeRose, J

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Desai, S

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Diehl, HT

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Dietrich, JP

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Dodelson, S

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Doel, P

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Drlica-Wagner, A

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Eckert, K

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Eifler, TF

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Elvin-Poole, J

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Estrada, J

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Everett, S

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Evrard, AE

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Farahi, A

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Ferrero, I

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Flaugher, B

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Fosalba, P

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Frieman, J

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García-Bellido, J

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Gatti, M

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Gaztanaga, E

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Gerdes, DW

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Giannantonio, T

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Giles, P

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Grandis, S

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Gruen, D

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Gruendl, RA

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Gschwend, J

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Gutierrez, G

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Hartley, WG

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Hinton, SR

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Hollowood, DL

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Honscheid, K

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Hoyle, B

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Huterer, D

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James, DJ

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Jarvis, M

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Jeltema, T

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Johnson, MWG

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Johnson, MD

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Kent, S

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Krause, E

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Kron, R

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Kuehn, K

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Kuropatkin, N

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Lahav, O

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Li, TS

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Lidman, C

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Lima, M

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Lin, H

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MacCrann, N

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Maia, MAG

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Mantz, A

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Marshall, JL

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Martini, P

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Mayers, J

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Melchior, P

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Mena-Fernández, J

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Menanteau, F

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Miquel, R

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Mohr, JJ

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Nichol, RC

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Nord, B

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Ogando, RLC

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Palmese, A

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Paz-Chinchón, F

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Plazas, AA

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Prat, J

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Rau, MM

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Romer, AK

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Roodman, A

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Rooney, P

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Rozo, E

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Rykoff, ES

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Sako, M

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Samuroff, S

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Sánchez, C

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Sanchez, E

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Saro, A

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Scarpine, V

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Schubnell, M

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Scolnic, D

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Serrano, S

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Sevilla-Noarbe, I

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Sheldon, E

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Smith, J Allyn

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Smith, M

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Suchyta, E

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Swanson, MEC

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Tarle, G

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Thomas, D

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To, C

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Troxel, MA

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Tucker, DL

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Varga, TN

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von der Linden, A

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Walker, AR

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Wechsler, RH

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Weller, J

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Wilkinson, RD

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Wu, H

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Yanny, B

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Zhang, Y

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Zhang, Z

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Zuntz, J

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Collaboration, DES

dc.date.accessioned

2020-04-23T20:38:10Z

dc.date.available

2020-04-23T20:38:10Z

dc.date.updated

2020-04-23T20:38:09Z

dc.description.abstract

We perform a joint analysis of the counts and weak lensing signal of redMaPPer clusters selected from the Dark Energy Survey (DES) Year 1 dataset. Our analysis uses the same shear and source photometric redshifts estimates as were used in the DES combined probes analysis. Our analysis results in surprisingly low values for $S_8 =\sigma_8(\Omega_{\rm m}/0.3)^{0.5}= 0.65\pm 0.04$, driven by a low matter density parameter, $\Omega_{\rm m}=0.179^{+0.031}{-0.038}$, with $\sigma_8-\Omega{\rm m}$ posteriors in $2.4\sigma$ tension with the DES Y1 3x2pt results, and in $5.6\sigma$ with the Planck CMB analysis. These results include the impact of post-unblinding changes to the analysis, which did not improve the level of consistency with other data sets compared to the results obtained at the unblinding. The fact that multiple cosmological probes (supernovae, baryon acoustic oscillations, cosmic shear, galaxy clustering and CMB anisotropies), and other galaxy cluster analyses all favor significantly higher matter densities suggests the presence of systematic errors in the data or an incomplete modeling of the relevant physics. Cross checks with X-ray and microwave data, as well as independent constraints on the observable--mass relation from SZ selected clusters, suggest that the discrepancy resides in our modeling of the weak lensing signal rather than the cluster abundance. Repeating our analysis using a higher richness threshold ($\lambda \ge 30$) significantly reduces the tension with other probes, and points to one or more richness-dependent effects not captured by our model.

dc.identifier.uri

https://hdl.handle.net/10161/20492

dc.publisher

American Physical Society (APS)

dc.subject

astro-ph.CO

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astro-ph.CO

dc.title

Dark Energy Survey Year 1 Results: Cosmological Constraints from Cluster Abundances and Weak Lensing

dc.type

Journal article

duke.contributor.orcid

Scolnic, D|0000-0002-4934-5849

duke.contributor.orcid

Troxel, MA|0000-0002-5622-5212

pubs.organisational-group

Trinity College of Arts & Sciences

pubs.organisational-group

Physics

pubs.organisational-group

Duke

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