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Title: Dark Energy Survey Year 1 results: Methodology and projections for joint analysis of galaxy clustering, galaxy lensing, and CMB lensing two-point functions

Abstract

Optical imaging surveys measure both the galaxy density and the gravitational lensing-induced shear fields across the sky. Recently, the Dark Energy Survey (DES) collaboration used a joint fit to two-point correlations between these observables to place tight constraints on cosmology (DES Collaboration et al. 2017). In this work, we develop the methodology to extend the DES year one joint probes analysis to include cross-correlations of the optical survey observables with gravitational lensing of the cosmic microwave background (CMB) as measured by the South Pole Telescope (SPT) and Planck. Using simulated analyses, we show how the resulting set of five two-point functions increases the robustness of the cosmological constraints to systematic errors in galaxy lensing shear calibration. Additionally, we show that contamination of the SPT+Planck CMB lensing map by the thermal Sunyaev-Zel'dovich effect is a potentially large source of systematic error for two-point function analyses, but show that it can be reduced to acceptable levels in our analysis by masking clusters of galaxies and imposing angular scale cuts on the two-point functions. The methodology developed here will be applied to the analysis of data from the DES, the SPT, and Planck in a companion work.

Authors:
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Publication Date:
Research Org.:
Brookhaven National Laboratory (BNL), Upton, NY (United States); SLAC National Accelerator Laboratory (SLAC), Menlo Park, CA (United States); Fermi National Accelerator Laboratory (FNAL), Batavia, IL (United States); Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States); Univ. of Michigan, Ann Arbor, MI (United States)
Sponsoring Org.:
USDOE Office of Science (SC), High Energy Physics (HEP)
Contributing Org.:
DES and SPT Collaborations
OSTI Identifier:
1491675
Alternate Identifier(s):
OSTI ID: 1423573; OSTI ID: 1489706; OSTI ID: 1503977; OSTI ID: 1728574
Report Number(s):
BNL-210899-2019-JAAM; arXiv:1802.05257; FERMILAB-PUB-18-045-A-AE
Journal ID: ISSN 2470-0010; PRVDAQ
Grant/Contract Number:  
SC0012704; SC0007901; SC0015975; AC02-07CH11359; AC02- 06CH11357; AC02-06CH11357; PHY-0114422; AC05-00OR22725; SC0019193
Resource Type:
Accepted Manuscript
Journal Name:
Physical Review D
Additional Journal Information:
Journal Volume: 99; Journal Issue: 2; Journal ID: ISSN 2470-0010
Publisher:
American Physical Society (APS)
Country of Publication:
United States
Language:
English
Subject:
79 ASTRONOMY AND ASTROPHYSICS; cmb; galaxy; lensing; clustering; DES; SPT; Planck; gravitational

Citation Formats

Baxter, E. J., Omori, Y., Chang, C., Giannantonio, T., Kirk, D., Krause, E., Blazek, J., Bleem, L., Choi, A., Crawford, T. M., Dodelson, S., Eifler, T. F., Friedrich, O., Gruen, D., Holder, G. P., Jain, B., Jarvis, M., MacCrann, N., Nicola, A., Pandey, S., Prat, J., Reichardt, C. L., Samuroff, S., Sánchez, C., Secco, L. F., Sheldon, E., Troxel, M. A., Zuntz, J., Abbott, T. M. C., Abdalla, F. B., Annis, J., Avila, S., Bechtol, K., Benson, B. A., Bertin, E., Brooks, D., Buckley-Geer, E., Burke, D. L., Carnero Rosell, A., Carrasco Kind, M., Carretero, J., Castander, F. J., Cawthon, R., Cunha, C. E., D’Andrea, C. B., da Costa, L. N., Davis, C., De Vicente, J., DePoy, D. L., Diehl, H. T., Doel, P., Estrada, J., Evrard, A. E., Flaugher, B., Fosalba, P., Frieman, J., García-Bellido, J., Gaztanaga, E., Gerdes, D. W., Gruendl, R. A., Gschwend, J., Gutierrez, G., Hartley, W. G., Hollowood, D., Hoyle, B., James, D. J., Kent, S., Kuehn, K., Kuropatkin, N., Lahav, O., Lima, M., Maia, M. A. G., March, M., Marshall, J. L., Melchior, P., Menanteau, F., Miquel, R., Plazas, A. A., Roodman, A., Rykoff, E. S., Sanchez, E., Schindler, R., Schubnell, M., Sevilla-Noarbe, I., Smith, M., Smith, R. C., Soares-Santos, M., Sobreira, F., Suchyta, E., Swanson, M. E. C., Tarle, G., Walker, A. R., Wu, W. L. K., and Weller, J. Dark Energy Survey Year 1 results: Methodology and projections for joint analysis of galaxy clustering, galaxy lensing, and CMB lensing two-point functions. United States: N. p., 2019. Web. doi:10.1103/PhysRevD.99.023508.
Baxter, E. J., Omori, Y., Chang, C., Giannantonio, T., Kirk, D., Krause, E., Blazek, J., Bleem, L., Choi, A., Crawford, T. M., Dodelson, S., Eifler, T. F., Friedrich, O., Gruen, D., Holder, G. P., Jain, B., Jarvis, M., MacCrann, N., Nicola, A., Pandey, S., Prat, J., Reichardt, C. L., Samuroff, S., Sánchez, C., Secco, L. F., Sheldon, E., Troxel, M. A., Zuntz, J., Abbott, T. M. C., Abdalla, F. B., Annis, J., Avila, S., Bechtol, K., Benson, B. A., Bertin, E., Brooks, D., Buckley-Geer, E., Burke, D. L., Carnero Rosell, A., Carrasco Kind, M., Carretero, J., Castander, F. J., Cawthon, R., Cunha, C. E., D’Andrea, C. B., da Costa, L. N., Davis, C., De Vicente, J., DePoy, D. L., Diehl, H. T., Doel, P., Estrada, J., Evrard, A. E., Flaugher, B., Fosalba, P., Frieman, J., García-Bellido, J., Gaztanaga, E., Gerdes, D. W., Gruendl, R. A., Gschwend, J., Gutierrez, G., Hartley, W. G., Hollowood, D., Hoyle, B., James, D. J., Kent, S., Kuehn, K., Kuropatkin, N., Lahav, O., Lima, M., Maia, M. A. G., March, M., Marshall, J. L., Melchior, P., Menanteau, F., Miquel, R., Plazas, A. A., Roodman, A., Rykoff, E. S., Sanchez, E., Schindler, R., Schubnell, M., Sevilla-Noarbe, I., Smith, M., Smith, R. C., Soares-Santos, M., Sobreira, F., Suchyta, E., Swanson, M. E. C., Tarle, G., Walker, A. R., Wu, W. L. K., & Weller, J. Dark Energy Survey Year 1 results: Methodology and projections for joint analysis of galaxy clustering, galaxy lensing, and CMB lensing two-point functions. United States. https://doi.org/10.1103/PhysRevD.99.023508
Baxter, E. J., Omori, Y., Chang, C., Giannantonio, T., Kirk, D., Krause, E., Blazek, J., Bleem, L., Choi, A., Crawford, T. M., Dodelson, S., Eifler, T. F., Friedrich, O., Gruen, D., Holder, G. P., Jain, B., Jarvis, M., MacCrann, N., Nicola, A., Pandey, S., Prat, J., Reichardt, C. L., Samuroff, S., Sánchez, C., Secco, L. F., Sheldon, E., Troxel, M. A., Zuntz, J., Abbott, T. M. C., Abdalla, F. B., Annis, J., Avila, S., Bechtol, K., Benson, B. A., Bertin, E., Brooks, D., Buckley-Geer, E., Burke, D. L., Carnero Rosell, A., Carrasco Kind, M., Carretero, J., Castander, F. J., Cawthon, R., Cunha, C. E., D’Andrea, C. B., da Costa, L. N., Davis, C., De Vicente, J., DePoy, D. L., Diehl, H. T., Doel, P., Estrada, J., Evrard, A. E., Flaugher, B., Fosalba, P., Frieman, J., García-Bellido, J., Gaztanaga, E., Gerdes, D. W., Gruendl, R. A., Gschwend, J., Gutierrez, G., Hartley, W. G., Hollowood, D., Hoyle, B., James, D. J., Kent, S., Kuehn, K., Kuropatkin, N., Lahav, O., Lima, M., Maia, M. A. G., March, M., Marshall, J. L., Melchior, P., Menanteau, F., Miquel, R., Plazas, A. A., Roodman, A., Rykoff, E. S., Sanchez, E., Schindler, R., Schubnell, M., Sevilla-Noarbe, I., Smith, M., Smith, R. C., Soares-Santos, M., Sobreira, F., Suchyta, E., Swanson, M. E. C., Tarle, G., Walker, A. R., Wu, W. L. K., and Weller, J. Fri . "Dark Energy Survey Year 1 results: Methodology and projections for joint analysis of galaxy clustering, galaxy lensing, and CMB lensing two-point functions". United States. https://doi.org/10.1103/PhysRevD.99.023508. https://www.osti.gov/servlets/purl/1491675.
@article{osti_1491675,
title = {Dark Energy Survey Year 1 results: Methodology and projections for joint analysis of galaxy clustering, galaxy lensing, and CMB lensing two-point functions},
author = {Baxter, E. J. and Omori, Y. and Chang, C. and Giannantonio, T. and Kirk, D. and Krause, E. and Blazek, J. and Bleem, L. and Choi, A. and Crawford, T. M. and Dodelson, S. and Eifler, T. F. and Friedrich, O. and Gruen, D. and Holder, G. P. and Jain, B. and Jarvis, M. and MacCrann, N. and Nicola, A. and Pandey, S. and Prat, J. and Reichardt, C. L. and Samuroff, S. and Sánchez, C. and Secco, L. F. and Sheldon, E. and Troxel, M. A. and Zuntz, J. and Abbott, T. M. C. and Abdalla, F. B. and Annis, J. and Avila, S. and Bechtol, K. and Benson, B. A. and Bertin, E. and Brooks, D. and Buckley-Geer, E. and Burke, D. L. and Carnero Rosell, A. and Carrasco Kind, M. and Carretero, J. and Castander, F. J. and Cawthon, R. and Cunha, C. E. and D’Andrea, C. B. and da Costa, L. N. and Davis, C. and De Vicente, J. and DePoy, D. L. and Diehl, H. T. and Doel, P. and Estrada, J. and Evrard, A. E. and Flaugher, B. and Fosalba, P. and Frieman, J. and García-Bellido, J. and Gaztanaga, E. and Gerdes, D. W. and Gruendl, R. A. and Gschwend, J. and Gutierrez, G. and Hartley, W. G. and Hollowood, D. and Hoyle, B. and James, D. J. and Kent, S. and Kuehn, K. and Kuropatkin, N. and Lahav, O. and Lima, M. and Maia, M. A. G. and March, M. and Marshall, J. L. and Melchior, P. and Menanteau, F. and Miquel, R. and Plazas, A. A. and Roodman, A. and Rykoff, E. S. and Sanchez, E. and Schindler, R. and Schubnell, M. and Sevilla-Noarbe, I. and Smith, M. and Smith, R. C. and Soares-Santos, M. and Sobreira, F. and Suchyta, E. and Swanson, M. E. C. and Tarle, G. and Walker, A. R. and Wu, W. L. K. and Weller, J.},
abstractNote = {Optical imaging surveys measure both the galaxy density and the gravitational lensing-induced shear fields across the sky. Recently, the Dark Energy Survey (DES) collaboration used a joint fit to two-point correlations between these observables to place tight constraints on cosmology (DES Collaboration et al. 2017). In this work, we develop the methodology to extend the DES year one joint probes analysis to include cross-correlations of the optical survey observables with gravitational lensing of the cosmic microwave background (CMB) as measured by the South Pole Telescope (SPT) and Planck. Using simulated analyses, we show how the resulting set of five two-point functions increases the robustness of the cosmological constraints to systematic errors in galaxy lensing shear calibration. Additionally, we show that contamination of the SPT+Planck CMB lensing map by the thermal Sunyaev-Zel'dovich effect is a potentially large source of systematic error for two-point function analyses, but show that it can be reduced to acceptable levels in our analysis by masking clusters of galaxies and imposing angular scale cuts on the two-point functions. The methodology developed here will be applied to the analysis of data from the DES, the SPT, and Planck in a companion work.},
doi = {10.1103/PhysRevD.99.023508},
journal = {Physical Review D},
number = 2,
volume = 99,
place = {United States},
year = {Fri Jan 04 00:00:00 EST 2019},
month = {Fri Jan 04 00:00:00 EST 2019}
}

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Intrinsic correlation of galaxy shapes: implications for weak lensing measurements
journal, December 2000

  • Heavens, Alan; Refregier, Alexandre; Heymans, Catherine
  • Monthly Notices of the Royal Astronomical Society, Vol. 319, Issue 2
  • DOI: 10.1046/j.1365-8711.2000.03907.x

Planck 2015 results : XI. CMB power spectra, likelihoods, and robustness of parameters
journal, September 2016


Planck intermediate results: VI. The dynamical structure of PLCKG214.6+37.0, a Planck discovered triple system of galaxy clusters
journal, February 2013


Planck 2015 results : XIII. Cosmological parameters
journal, September 2016


Weak gravitational lensing
journal, January 2017


Planck intermediate results : XXIV. Constraints on variations in fundamental constants⋆
journal, July 2015


Planck 2015 results : VI. LFI mapmaking
journal, September 2016


Planck 2015 results : X. Diffuse component separation: Foreground maps
journal, September 2016


Planck 2015 results : XVI. Isotropy and statistics of the CMB
journal, September 2016


Dark Energy Survey Year 1 Results: Photometric Data Set for Cosmology
text, January 2018

  • Drlica-Wagner, A.; Sevilla-Noarbe, I.; Rykoff, Es
  • Apollo - University of Cambridge Repository
  • DOI: 10.17863/cam.21145

Evidence for quadratic tidal tensor bias from the halo bispectrum
text, January 2012

  • Baldauf, Tobias; Seljak, Uroš; Desjacques, Vincent
  • American Physical Society
  • DOI: 10.5167/uzh-70072

Planck 2015 results : XXVI. The Second
journal, September 2016


The physics driving the cosmic star formation history
text, January 2009


Planck Early Results: The Planck mission
text, January 2011


CMB power spectrum parameter degeneracies in the era of precision cosmology
text, January 2012


Power Spectrum Super-Sample Covariance
text, January 2013


redMaPPer I: Algorithm and SDSS DR8 Catalog
text, January 2013


On estimating cosmology-dependent covariance matrices
text, January 2013


First Measurement of the Cross-Correlation of CMB Lensing and Galaxy Lensing
text, January 2013


CosmoSIS: modular cosmological parameter estimation
text, January 2014


Planck 2015 results. XV. Gravitational lensing
text, January 2015


Planck 2015 results. XXII. A map of the thermal Sunyaev-Zeldovich effect
text, January 2015


CMB lensing tomography with the DES Science Verification galaxies
text, January 2015


Constraining Multiplicative Bias in CFHTLenS Weak Lensing Shear Data
text, January 2016


CFHTLenS revisited: assessing concordance with Planck including astrophysical systematics
text, January 2016


FAST-PT: a novel algorithm to calculate convolution integrals in cosmological perturbation theory
text, January 2016


CFHTLenS and RCSLenS Cross-Correlation with Planck Lensing Detected in Fourier and Configuration Space
text, January 2016


Integrated approach to cosmology: Combining CMB, large-scale structure and weak lensing
text, January 2016


Practical Weak Lensing Shear Measurement with Metacalibration
text, January 2017


KiDS-450: Tomographic Cross-Correlation of Galaxy Shear with {\it Planck} Lensing
text, January 2017


Dark Energy Survey Year 1 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing
text, January 2017


Dark Energy Survey Year 1 Results: Photometric Data Set for Cosmology
text, January 2017


Dark Energy Survey Year 1 Results: Galaxy-Galaxy Lensing
text, January 2017


Dark Energy Survey Year 1 Results: Cosmological Constraints from Cosmic Shear
text, January 2017


Mitigating Foreground Biases in CMB Lensing Reconstruction Using Cleaned Gradients
text, January 2018


Spin induced galaxy alignments and their implications for weak lensing measurements
text, January 2000


Stable clustering, the halo model and nonlinear cosmological power spectra
text, January 2002


Cosmology with the Sunyaev-Zel'dovich Effect
text, January 2002


Intrinsic alignment-lensing interference as a contaminant of cosmic shear
text, January 2004


The Luminosity and Color Dependence of the Galaxy Correlation Function
text, January 2004


The scale-dependence of relative galaxy bias: encouragement for the halo model description
text, January 2004


The Structure of Cold Dark Matter Halos
text, January 1995


Works referencing / citing this record:

Towards emulating cosmic shear data: revisiting the calibration of the shear measurements for the Kilo-Degree Survey
journal, April 2019


Cosmological lensing ratios with DES Y1, SPT, and Planck
journal, May 2019

  • Prat, J.; Baxter, E.; Shin, T.
  • Monthly Notices of the Royal Astronomical Society, Vol. 487, Issue 1
  • DOI: 10.1093/mnras/stz1309

Reconstructing probability distributions with Gaussian processes
journal, September 2019

  • McClintock, Thomas; Rozo, Eduardo
  • Monthly Notices of the Royal Astronomical Society, Vol. 489, Issue 3
  • DOI: 10.1093/mnras/stz2426

Reconstructing Probability Distributions with Gaussian Processes
text, January 2019