Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing

We measure the cross-correlation between weak lensing of galaxy images and of the cosmic microwave background (CMB). The effects of gravitational lensing on different sources will be correlated if the lensing is caused by the same mass fluctuations. We use galaxy shape measurements from 139 deg2 of...

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Published in:Monthly Notices of the Royal Astronomical Society
Main Authors: Kirk, D., Omori, Y., Benoit-Lévy, A., Cawthon, R., Chang, C., Larsen, P., Amara, A., Bacon, D., Crawford, T. M., Dodelson, S., Fosalba, P., Giannantonio, T., Holder, G., Jain, B., Kacprzak, T., Lahav, O., MacCrann, N., Nicola, A., Refregier, A., Sheldon, E., Story, K. T., Troxel, M. A., Vieira, J. D., Vikram, V., Zuntz, J., Abbott, T. M. C., Abdalla, F. B., Becker, M. R., Benson, B. A., Bernstein, G. M., Bernstein, R. A., Bleem, L. E., Bonnett, C., Bridle, S. L., Brooks, D., Buckley-Geer, E., Burke, D. L., Capozzi, D., Carlstrom, J. E., Rosell, A. Carnero, Kind, M. Carrasco, Carretero, J., Crocce, M., Cunha, C. E., D'Andrea, C. B., Costa, L. N. da, Desai, S., Diehl, H. T., Dietrich, J. P., Doel, P., Eifler, T. F., Evrard, A. E., Flaugher, B., Frieman, J., Gerdes, D. W., Goldstein, D. A., Gruen, D., Gruendl, R. A., Honscheid, K., James, D. J., Jarvis, M., Kent, S., Kuehn, K., Kuropatkin, N., Lima, M., March, M., Martini, P., Melchior, P., Miller, C. J., Miquel, R., Nichol, R. C., Ogando, R., Plazas, A. A., Reichardt, C. L., Roodman, A., Rozo, E., Rykoff, E. S., Sako, M., Sanchez, E., Scarpine, V., Schubnell, M., Sevilla-Noarbe, I., Simard, G., Smith, R. C., Soares-Santos, M., Sobreira, F., Suchyta, E., Swanson, M. E. C., Tarle, G., Thomas, D., Wechsler, R. H., Weller, J.
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:https://doi.org/10.1093/mnras/stw570
https://researchportal.port.ac.uk/portal/en/publications/crosscorrelation-of-gravitational-lensing-from-des-science-verification-data-with-spt-and-planck-lensing(8faaaef9-9a6e-4981-ae87-77d62702dca5).html
https://researchportal.port.ac.uk/ws/files/3900196/Cross_correlation_of_gravitational_lensing.pdf
id ftunivportsmpubl:oai:researchportal.port.ac.uk:publications/8faaaef9-9a6e-4981-ae87-77d62702dca5
record_format openpolar
institution Open Polar
collection University of Portsmouth: Portsmouth Research Portal
op_collection_id ftunivportsmpubl
language English
topic astro-ph.CO
gravitational lensing: weak
methods: data analysis
cosmic background radiation
RCUK
STFC
/dk/atira/pure/core/subjects/cosmology
Cosmology and Gravitation
spellingShingle astro-ph.CO
gravitational lensing: weak
methods: data analysis
cosmic background radiation
RCUK
STFC
/dk/atira/pure/core/subjects/cosmology
Cosmology and Gravitation
Kirk, D.
Omori, Y.
Benoit-Lévy, A.
Cawthon, R.
Chang, C.
Larsen, P.
Amara, A.
Bacon, D.
Crawford, T. M.
Dodelson, S.
Fosalba, P.
Giannantonio, T.
Holder, G.
Jain, B.
Kacprzak, T.
Lahav, O.
MacCrann, N.
Nicola, A.
Refregier, A.
Sheldon, E.
Story, K. T.
Troxel, M. A.
Vieira, J. D.
Vikram, V.
Zuntz, J.
Abbott, T. M. C.
Abdalla, F. B.
Becker, M. R.
Benson, B. A.
Bernstein, G. M.
Bernstein, R. A.
Bleem, L. E.
Bonnett, C.
Bridle, S. L.
Brooks, D.
Buckley-Geer, E.
Burke, D. L.
Capozzi, D.
Carlstrom, J. E.
Rosell, A. Carnero
Kind, M. Carrasco
Carretero, J.
Crocce, M.
Cunha, C. E.
D'Andrea, C. B.
Costa, L. N. da
Desai, S.
Diehl, H. T.
Dietrich, J. P.
Doel, P.
Eifler, T. F.
Evrard, A. E.
Flaugher, B.
Frieman, J.
Gerdes, D. W.
Goldstein, D. A.
Gruen, D.
Gruendl, R. A.
Honscheid, K.
James, D. J.
Jarvis, M.
Kent, S.
Kuehn, K.
Kuropatkin, N.
Lima, M.
March, M.
Martini, P.
Melchior, P.
Miller, C. J.
Miquel, R.
Nichol, R. C.
Ogando, R.
Plazas, A. A.
Reichardt, C. L.
Roodman, A.
Rozo, E.
Rykoff, E. S.
Sako, M.
Sanchez, E.
Scarpine, V.
Schubnell, M.
Sevilla-Noarbe, I.
Simard, G.
Smith, R. C.
Soares-Santos, M.
Sobreira, F.
Suchyta, E.
Swanson, M. E. C.
Tarle, G.
Thomas, D.
Wechsler, R. H.
Weller, J.
Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
topic_facet astro-ph.CO
gravitational lensing: weak
methods: data analysis
cosmic background radiation
RCUK
STFC
/dk/atira/pure/core/subjects/cosmology
Cosmology and Gravitation
description We measure the cross-correlation between weak lensing of galaxy images and of the cosmic microwave background (CMB). The effects of gravitational lensing on different sources will be correlated if the lensing is caused by the same mass fluctuations. We use galaxy shape measurements from 139 deg2 of the Dark Energy Survey (DES) Science Verification data and overlapping CMB lensing from the South Pole Telescope (SPT) and Planck. The DES source galaxies have a median redshift of zmed ∼ 0.7, while the CMB lensing kernel is broad and peaks at z ∼ 2. The resulting cross-correlation is maximally sensitive to mass fluctuations at z ∼ 0.44. Assuming the Planck 2015 best-fitting cosmology, the amplitude of the DES×SPT cross-power is found to be ASPT = 0.88 ± 0.30 and that from DES×Planck to be APlanck = 0.86 ± 0.39, where A = 1 corresponds to the theoretical prediction. These are consistent with the expected signal and correspond to significances of 2.9σ and 2.2σ, respectively. We demonstrate that our results are robust to a number of important systematic effects including the shear measurement method, estimator choice, photo-z uncertainty and CMB lensing systematics. We calculate a value of A = 1.08 ± 0.36 for DES×SPT when we correct the observations with a simple intrinsic alignment model. With three measurements of this cross-correlation now existing in the literature, there is not yet reliable evidence for any deviation from the expected LCDM level of cross-correlation. We provide forecasts for the expected signal-to-noise ratio of the combination of the five-year DES survey and SPT-3G.
format Article in Journal/Newspaper
author Kirk, D.
Omori, Y.
Benoit-Lévy, A.
Cawthon, R.
Chang, C.
Larsen, P.
Amara, A.
Bacon, D.
Crawford, T. M.
Dodelson, S.
Fosalba, P.
Giannantonio, T.
Holder, G.
Jain, B.
Kacprzak, T.
Lahav, O.
MacCrann, N.
Nicola, A.
Refregier, A.
Sheldon, E.
Story, K. T.
Troxel, M. A.
Vieira, J. D.
Vikram, V.
Zuntz, J.
Abbott, T. M. C.
Abdalla, F. B.
Becker, M. R.
Benson, B. A.
Bernstein, G. M.
Bernstein, R. A.
Bleem, L. E.
Bonnett, C.
Bridle, S. L.
Brooks, D.
Buckley-Geer, E.
Burke, D. L.
Capozzi, D.
Carlstrom, J. E.
Rosell, A. Carnero
Kind, M. Carrasco
Carretero, J.
Crocce, M.
Cunha, C. E.
D'Andrea, C. B.
Costa, L. N. da
Desai, S.
Diehl, H. T.
Dietrich, J. P.
Doel, P.
Eifler, T. F.
Evrard, A. E.
Flaugher, B.
Frieman, J.
Gerdes, D. W.
Goldstein, D. A.
Gruen, D.
Gruendl, R. A.
Honscheid, K.
James, D. J.
Jarvis, M.
Kent, S.
Kuehn, K.
Kuropatkin, N.
Lima, M.
March, M.
Martini, P.
Melchior, P.
Miller, C. J.
Miquel, R.
Nichol, R. C.
Ogando, R.
Plazas, A. A.
Reichardt, C. L.
Roodman, A.
Rozo, E.
Rykoff, E. S.
Sako, M.
Sanchez, E.
Scarpine, V.
Schubnell, M.
Sevilla-Noarbe, I.
Simard, G.
Smith, R. C.
Soares-Santos, M.
Sobreira, F.
Suchyta, E.
Swanson, M. E. C.
Tarle, G.
Thomas, D.
Wechsler, R. H.
Weller, J.
author_facet Kirk, D.
Omori, Y.
Benoit-Lévy, A.
Cawthon, R.
Chang, C.
Larsen, P.
Amara, A.
Bacon, D.
Crawford, T. M.
Dodelson, S.
Fosalba, P.
Giannantonio, T.
Holder, G.
Jain, B.
Kacprzak, T.
Lahav, O.
MacCrann, N.
Nicola, A.
Refregier, A.
Sheldon, E.
Story, K. T.
Troxel, M. A.
Vieira, J. D.
Vikram, V.
Zuntz, J.
Abbott, T. M. C.
Abdalla, F. B.
Becker, M. R.
Benson, B. A.
Bernstein, G. M.
Bernstein, R. A.
Bleem, L. E.
Bonnett, C.
Bridle, S. L.
Brooks, D.
Buckley-Geer, E.
Burke, D. L.
Capozzi, D.
Carlstrom, J. E.
Rosell, A. Carnero
Kind, M. Carrasco
Carretero, J.
Crocce, M.
Cunha, C. E.
D'Andrea, C. B.
Costa, L. N. da
Desai, S.
Diehl, H. T.
Dietrich, J. P.
Doel, P.
Eifler, T. F.
Evrard, A. E.
Flaugher, B.
Frieman, J.
Gerdes, D. W.
Goldstein, D. A.
Gruen, D.
Gruendl, R. A.
Honscheid, K.
James, D. J.
Jarvis, M.
Kent, S.
Kuehn, K.
Kuropatkin, N.
Lima, M.
March, M.
Martini, P.
Melchior, P.
Miller, C. J.
Miquel, R.
Nichol, R. C.
Ogando, R.
Plazas, A. A.
Reichardt, C. L.
Roodman, A.
Rozo, E.
Rykoff, E. S.
Sako, M.
Sanchez, E.
Scarpine, V.
Schubnell, M.
Sevilla-Noarbe, I.
Simard, G.
Smith, R. C.
Soares-Santos, M.
Sobreira, F.
Suchyta, E.
Swanson, M. E. C.
Tarle, G.
Thomas, D.
Wechsler, R. H.
Weller, J.
author_sort Kirk, D.
title Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
title_short Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
title_full Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
title_fullStr Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
title_full_unstemmed Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
title_sort cross-correlation of gravitational lensing from des science verification data with spt and planck lensing
publishDate 2016
url https://doi.org/10.1093/mnras/stw570
https://researchportal.port.ac.uk/portal/en/publications/crosscorrelation-of-gravitational-lensing-from-des-science-verification-data-with-spt-and-planck-lensing(8faaaef9-9a6e-4981-ae87-77d62702dca5).html
https://researchportal.port.ac.uk/ws/files/3900196/Cross_correlation_of_gravitational_lensing.pdf
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spelling ftunivportsmpubl:oai:researchportal.port.ac.uk:publications/8faaaef9-9a6e-4981-ae87-77d62702dca5 2023-05-15T18:23:04+02:00 Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing Kirk, D. Omori, Y. Benoit-Lévy, A. Cawthon, R. Chang, C. Larsen, P. Amara, A. Bacon, D. Crawford, T. M. Dodelson, S. Fosalba, P. Giannantonio, T. Holder, G. Jain, B. Kacprzak, T. Lahav, O. MacCrann, N. Nicola, A. Refregier, A. Sheldon, E. Story, K. T. Troxel, M. A. Vieira, J. D. Vikram, V. Zuntz, J. Abbott, T. M. C. Abdalla, F. B. Becker, M. R. Benson, B. A. Bernstein, G. M. Bernstein, R. A. Bleem, L. E. Bonnett, C. Bridle, S. L. Brooks, D. Buckley-Geer, E. Burke, D. L. Capozzi, D. Carlstrom, J. E. Rosell, A. Carnero Kind, M. Carrasco Carretero, J. Crocce, M. Cunha, C. E. D'Andrea, C. B. Costa, L. N. da Desai, S. Diehl, H. T. Dietrich, J. P. Doel, P. Eifler, T. F. Evrard, A. E. Flaugher, B. Frieman, J. Gerdes, D. W. Goldstein, D. A. Gruen, D. Gruendl, R. A. Honscheid, K. James, D. J. Jarvis, M. Kent, S. Kuehn, K. Kuropatkin, N. Lima, M. March, M. Martini, P. Melchior, P. Miller, C. J. Miquel, R. Nichol, R. C. Ogando, R. Plazas, A. A. Reichardt, C. L. Roodman, A. Rozo, E. Rykoff, E. S. Sako, M. Sanchez, E. Scarpine, V. Schubnell, M. Sevilla-Noarbe, I. Simard, G. Smith, R. C. Soares-Santos, M. Sobreira, F. Suchyta, E. Swanson, M. E. C. Tarle, G. Thomas, D. Wechsler, R. H. Weller, J. 2016-06 application/pdf https://doi.org/10.1093/mnras/stw570 https://researchportal.port.ac.uk/portal/en/publications/crosscorrelation-of-gravitational-lensing-from-des-science-verification-data-with-spt-and-planck-lensing(8faaaef9-9a6e-4981-ae87-77d62702dca5).html https://researchportal.port.ac.uk/ws/files/3900196/Cross_correlation_of_gravitational_lensing.pdf eng eng info:eu-repo/semantics/openAccess Kirk , D , Omori , Y , Benoit-Lévy , A , Cawthon , R , Chang , C , Larsen , P , Amara , A , Bacon , D , Crawford , T M , Dodelson , S , Fosalba , P , Giannantonio , T , Holder , G , Jain , B , Kacprzak , T , Lahav , O , MacCrann , N , Nicola , A , Refregier , A , Sheldon , E , Story , K T , Troxel , M A , Vieira , J D , Vikram , V , Zuntz , J , Abbott , T M C , Abdalla , F B , Becker , M R , Benson , B A , Bernstein , G M , Bernstein , R A , Bleem , L E , Bonnett , C , Bridle , S L , Brooks , D , Buckley-Geer , E , Burke , D L , Capozzi , D , Carlstrom , J E , Rosell , A C , Kind , M C , Carretero , J , Crocce , M , Cunha , C E , D'Andrea , C B , Costa , L N D , Desai , S , Diehl , H T , Dietrich , J P , Doel , P , Eifler , T F , Evrard , A E , Flaugher , B , Frieman , J , Gerdes , D W , Goldstein , D A , Gruen , D , Gruendl , R A , Honscheid , K , James , D J , Jarvis , M , Kent , S , Kuehn , K , Kuropatkin , N , Lima , M , March , M , Martini , P , Melchior , P , Miller , C J , Miquel , R , Nichol , R C , Ogando , R , Plazas , A A , Reichardt , C L , Roodman , A , Rozo , E , Rykoff , E S , Sako , M , Sanchez , E , Scarpine , V , Schubnell , M , Sevilla-Noarbe , I , Simard , G , Smith , R C , Soares-Santos , M , Sobreira , F , Suchyta , E , Swanson , M E C , Tarle , G , Thomas , D , Wechsler , R H & Weller , J 2016 , ' Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing ' Monthly Notices of the Royal Astronomical Society , vol 459 , no. 1 , pp. 21-34 . DOI:10.1093/mnras/stw570 astro-ph.CO gravitational lensing: weak methods: data analysis cosmic background radiation RCUK STFC /dk/atira/pure/core/subjects/cosmology Cosmology and Gravitation article 2016 ftunivportsmpubl https://doi.org/10.1093/mnras/stw570 2017-09-28T19:35:42Z We measure the cross-correlation between weak lensing of galaxy images and of the cosmic microwave background (CMB). The effects of gravitational lensing on different sources will be correlated if the lensing is caused by the same mass fluctuations. We use galaxy shape measurements from 139 deg2 of the Dark Energy Survey (DES) Science Verification data and overlapping CMB lensing from the South Pole Telescope (SPT) and Planck. The DES source galaxies have a median redshift of zmed ∼ 0.7, while the CMB lensing kernel is broad and peaks at z ∼ 2. The resulting cross-correlation is maximally sensitive to mass fluctuations at z ∼ 0.44. Assuming the Planck 2015 best-fitting cosmology, the amplitude of the DES×SPT cross-power is found to be ASPT = 0.88 ± 0.30 and that from DES×Planck to be APlanck = 0.86 ± 0.39, where A = 1 corresponds to the theoretical prediction. These are consistent with the expected signal and correspond to significances of 2.9σ and 2.2σ, respectively. We demonstrate that our results are robust to a number of important systematic effects including the shear measurement method, estimator choice, photo-z uncertainty and CMB lensing systematics. We calculate a value of A = 1.08 ± 0.36 for DES×SPT when we correct the observations with a simple intrinsic alignment model. With three measurements of this cross-correlation now existing in the literature, there is not yet reliable evidence for any deviation from the expected LCDM level of cross-correlation. We provide forecasts for the expected signal-to-noise ratio of the combination of the five-year DES survey and SPT-3G. Article in Journal/Newspaper South pole University of Portsmouth: Portsmouth Research Portal South Pole Monthly Notices of the Royal Astronomical Society 459 1 21 34