Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT
We detect the kinematic Sunyaev-Zel'dovich (kSZ) effect with a statistical significance of 4.2σ by combining a cluster catalogue derived from the first year data of the Dark Energy Survey with cosmic microwave background temperature maps from the South Pole Telescope Sunyaev-Zel'dovich Sur...
Published in: | Monthly Notices of the Royal Astronomical Society |
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Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
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2016
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Online Access: | https://doi.org/10.1093/mnras/stw1455 https://researchportal.port.ac.uk/portal/en/publications/detection-of-the-kinematic-sunyaevzeldovich-effect-with-des-year-1-and-spt(46896bdc-97cb-44a9-bbc4-2f268eea1918).html https://researchportal.port.ac.uk/ws/files/5570584/MNRAS_2016_Soergel_3172_93.pdf |
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University of Portsmouth: Portsmouth Research Portal |
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language |
English |
topic |
astro-ph.CO galaxies: clusters: general cosmic background radiation large-scale structure of Universe RCUK STFC ST/L000636/1 /dk/atira/pure/core/subjects/cosmology Cosmology and Gravitation |
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astro-ph.CO galaxies: clusters: general cosmic background radiation large-scale structure of Universe RCUK STFC ST/L000636/1 /dk/atira/pure/core/subjects/cosmology Cosmology and Gravitation Soergel, B. Flender, S. Story, K. T. Bleem, L. Giannantonio, T. Efstathiou, G. Rykoff, E. Benson, B. A. Crawford, T. Dodelson, S. Habib, S. Heitmann, K. Holder, G. Jain, B. Rozo, E. Saro, A. Weller, J. Abdalla, F. B. Allam, S. Annis, J. Armstrong, R. Benoit-Lévy, A. Bernstein, G. M. Carlstrom, J. E. Rosell, A. Carnero Kind, M. Carrasco Castander, F. J. Chiu, I. Chown, R. Crocce, M. Cunha, C. E. D'Andrea, C. B. Costa, L. N. da Haan, T. de Desai, S. Diehl, H. T. Dietrich, J. P. Doel, P. Estrada, J. Evrard, A. E. Flaugher, B. Fosalba, P. Frieman, J. Gaztanaga, E. Gruen, D. Gruendl, R. A. Holzapfel, W. L. Honscheid, K. James, D. J. Keisler, R. Kuehn, K. Kuropatkin, N. Lahav, O. Lima, M. Marshall, J. L. McDonald, M. Melchior, P. Miller, C. J. Miquel, R. Nord, B. Ogando, R. Omori, Y. Plazas, A. A. Rapetti, D. Reichardt, C. L. Romer, A. K. Roodman, A. Saliwanchik, B. R. Sanchez, E. Schubnell, M. Sevilla-Noarbe, I. Sheldon, E. Smith, R. C. Soares-Santos, M. Sobreira, F. Stark, A. Suchyta, E. Swanson, M. E. C. Tarle, G. Thomas, D. Vieira, J. D. Walker, A. R. Whitehorn, N. Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT |
topic_facet |
astro-ph.CO galaxies: clusters: general cosmic background radiation large-scale structure of Universe RCUK STFC ST/L000636/1 /dk/atira/pure/core/subjects/cosmology Cosmology and Gravitation |
description |
We detect the kinematic Sunyaev-Zel'dovich (kSZ) effect with a statistical significance of 4.2σ by combining a cluster catalogue derived from the first year data of the Dark Energy Survey with cosmic microwave background temperature maps from the South Pole Telescope Sunyaev-Zel'dovich Survey. This measurement is performed with a differential statistic that isolates the pairwise kSZ signal, providing the first detection of the large-scale, pairwise motion of clusters using redshifts derived from photometric data. By fitting the pairwise kSZ signal to a theoretical template, we measure the average central optical depth of the cluster sample, τ¯e=(3.75±0.89)×10−3τ¯e=(3.75±0.89)×10−3. We compare the extracted signal to realistic simulations and find good agreement with respect to the signal to noise, the constraint on τ¯eτ¯e, and the corresponding gas fraction. High-precision measurements of the pairwise kSZ signal with future data will be able to place constraints on the baryonic physics of galaxy clusters, and could be used to probe gravity on scales ≳100 Mpc. |
format |
Article in Journal/Newspaper |
author |
Soergel, B. Flender, S. Story, K. T. Bleem, L. Giannantonio, T. Efstathiou, G. Rykoff, E. Benson, B. A. Crawford, T. Dodelson, S. Habib, S. Heitmann, K. Holder, G. Jain, B. Rozo, E. Saro, A. Weller, J. Abdalla, F. B. Allam, S. Annis, J. Armstrong, R. Benoit-Lévy, A. Bernstein, G. M. Carlstrom, J. E. Rosell, A. Carnero Kind, M. Carrasco Castander, F. J. Chiu, I. Chown, R. Crocce, M. Cunha, C. E. D'Andrea, C. B. Costa, L. N. da Haan, T. de Desai, S. Diehl, H. T. Dietrich, J. P. Doel, P. Estrada, J. Evrard, A. E. Flaugher, B. Fosalba, P. Frieman, J. Gaztanaga, E. Gruen, D. Gruendl, R. A. Holzapfel, W. L. Honscheid, K. James, D. J. Keisler, R. Kuehn, K. Kuropatkin, N. Lahav, O. Lima, M. Marshall, J. L. McDonald, M. Melchior, P. Miller, C. J. Miquel, R. Nord, B. Ogando, R. Omori, Y. Plazas, A. A. Rapetti, D. Reichardt, C. L. Romer, A. K. Roodman, A. Saliwanchik, B. R. Sanchez, E. Schubnell, M. Sevilla-Noarbe, I. Sheldon, E. Smith, R. C. Soares-Santos, M. Sobreira, F. Stark, A. Suchyta, E. Swanson, M. E. C. Tarle, G. Thomas, D. Vieira, J. D. Walker, A. R. Whitehorn, N. |
author_facet |
Soergel, B. Flender, S. Story, K. T. Bleem, L. Giannantonio, T. Efstathiou, G. Rykoff, E. Benson, B. A. Crawford, T. Dodelson, S. Habib, S. Heitmann, K. Holder, G. Jain, B. Rozo, E. Saro, A. Weller, J. Abdalla, F. B. Allam, S. Annis, J. Armstrong, R. Benoit-Lévy, A. Bernstein, G. M. Carlstrom, J. E. Rosell, A. Carnero Kind, M. Carrasco Castander, F. J. Chiu, I. Chown, R. Crocce, M. Cunha, C. E. D'Andrea, C. B. Costa, L. N. da Haan, T. de Desai, S. Diehl, H. T. Dietrich, J. P. Doel, P. Estrada, J. Evrard, A. E. Flaugher, B. Fosalba, P. Frieman, J. Gaztanaga, E. Gruen, D. Gruendl, R. A. Holzapfel, W. L. Honscheid, K. James, D. J. Keisler, R. Kuehn, K. Kuropatkin, N. Lahav, O. Lima, M. Marshall, J. L. McDonald, M. Melchior, P. Miller, C. J. Miquel, R. Nord, B. Ogando, R. Omori, Y. Plazas, A. A. Rapetti, D. Reichardt, C. L. Romer, A. K. Roodman, A. Saliwanchik, B. R. Sanchez, E. Schubnell, M. Sevilla-Noarbe, I. Sheldon, E. Smith, R. C. Soares-Santos, M. Sobreira, F. Stark, A. Suchyta, E. Swanson, M. E. C. Tarle, G. Thomas, D. Vieira, J. D. Walker, A. R. Whitehorn, N. |
author_sort |
Soergel, B. |
title |
Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT |
title_short |
Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT |
title_full |
Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT |
title_fullStr |
Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT |
title_full_unstemmed |
Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT |
title_sort |
detection of the kinematic sunyaev-zel'dovich effect with des year 1 and spt |
publishDate |
2016 |
url |
https://doi.org/10.1093/mnras/stw1455 https://researchportal.port.ac.uk/portal/en/publications/detection-of-the-kinematic-sunyaevzeldovich-effect-with-des-year-1-and-spt(46896bdc-97cb-44a9-bbc4-2f268eea1918).html https://researchportal.port.ac.uk/ws/files/5570584/MNRAS_2016_Soergel_3172_93.pdf |
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South Pole |
geographic_facet |
South Pole |
genre |
South pole |
genre_facet |
South pole |
op_source |
Soergel , B , Flender , S , Story , K T , Bleem , L , Giannantonio , T , Efstathiou , G , Rykoff , E , Benson , B A , Crawford , T , Dodelson , S , Habib , S , Heitmann , K , Holder , G , Jain , B , Rozo , E , Saro , A , Weller , J , Abdalla , F B , Allam , S , Annis , J , Armstrong , R , Benoit-Lévy , A , Bernstein , G M , Carlstrom , J E , Rosell , A C , Kind , M C , Castander , F J , Chiu , I , Chown , R , Crocce , M , Cunha , C E , D'Andrea , C B , Costa , L N D , Haan , T D , Desai , S , Diehl , H T , Dietrich , J P , Doel , P , Estrada , J , Evrard , A E , Flaugher , B , Fosalba , P , Frieman , J , Gaztanaga , E , Gruen , D , Gruendl , R A , Holzapfel , W L , Honscheid , K , James , D J , Keisler , R , Kuehn , K , Kuropatkin , N , Lahav , O , Lima , M , Marshall , J L , McDonald , M , Melchior , P , Miller , C J , Miquel , R , Nord , B , Ogando , R , Omori , Y , Plazas , A A , Rapetti , D , Reichardt , C L , Romer , A K , Roodman , A , Saliwanchik , B R , Sanchez , E , Schubnell , M , Sevilla-Noarbe , I , Sheldon , E , Smith , R C , Soares-Santos , M , Sobreira , F , Stark , A , Suchyta , E , Swanson , M E C , Tarle , G , Thomas , D , Vieira , J D , Walker , A R & Whitehorn , N 2016 , ' Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT ' Monthly Notices of the Royal Astronomical Society , vol 461 , no. 3 , pp. 3172-3193 . DOI:10.1093/mnras/stw1455 |
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ftunivportsmpubl:oai:researchportal.port.ac.uk:publications/46896bdc-97cb-44a9-bbc4-2f268eea1918 2023-05-15T18:22:40+02:00 Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT Soergel, B. Flender, S. Story, K. T. Bleem, L. Giannantonio, T. Efstathiou, G. Rykoff, E. Benson, B. A. Crawford, T. Dodelson, S. Habib, S. Heitmann, K. Holder, G. Jain, B. Rozo, E. Saro, A. Weller, J. Abdalla, F. B. Allam, S. Annis, J. Armstrong, R. Benoit-Lévy, A. Bernstein, G. M. Carlstrom, J. E. Rosell, A. Carnero Kind, M. Carrasco Castander, F. J. Chiu, I. Chown, R. Crocce, M. Cunha, C. E. D'Andrea, C. B. Costa, L. N. da Haan, T. de Desai, S. Diehl, H. T. Dietrich, J. P. Doel, P. Estrada, J. Evrard, A. E. Flaugher, B. Fosalba, P. Frieman, J. Gaztanaga, E. Gruen, D. Gruendl, R. A. Holzapfel, W. L. Honscheid, K. James, D. J. Keisler, R. Kuehn, K. Kuropatkin, N. Lahav, O. Lima, M. Marshall, J. L. McDonald, M. Melchior, P. Miller, C. J. Miquel, R. Nord, B. Ogando, R. Omori, Y. Plazas, A. A. Rapetti, D. Reichardt, C. L. Romer, A. K. Roodman, A. Saliwanchik, B. R. Sanchez, E. Schubnell, M. Sevilla-Noarbe, I. Sheldon, E. Smith, R. C. Soares-Santos, M. Sobreira, F. Stark, A. Suchyta, E. Swanson, M. E. C. Tarle, G. Thomas, D. Vieira, J. D. Walker, A. R. Whitehorn, N. 2016-09-21 application/pdf https://doi.org/10.1093/mnras/stw1455 https://researchportal.port.ac.uk/portal/en/publications/detection-of-the-kinematic-sunyaevzeldovich-effect-with-des-year-1-and-spt(46896bdc-97cb-44a9-bbc4-2f268eea1918).html https://researchportal.port.ac.uk/ws/files/5570584/MNRAS_2016_Soergel_3172_93.pdf eng eng info:eu-repo/semantics/openAccess Soergel , B , Flender , S , Story , K T , Bleem , L , Giannantonio , T , Efstathiou , G , Rykoff , E , Benson , B A , Crawford , T , Dodelson , S , Habib , S , Heitmann , K , Holder , G , Jain , B , Rozo , E , Saro , A , Weller , J , Abdalla , F B , Allam , S , Annis , J , Armstrong , R , Benoit-Lévy , A , Bernstein , G M , Carlstrom , J E , Rosell , A C , Kind , M C , Castander , F J , Chiu , I , Chown , R , Crocce , M , Cunha , C E , D'Andrea , C B , Costa , L N D , Haan , T D , Desai , S , Diehl , H T , Dietrich , J P , Doel , P , Estrada , J , Evrard , A E , Flaugher , B , Fosalba , P , Frieman , J , Gaztanaga , E , Gruen , D , Gruendl , R A , Holzapfel , W L , Honscheid , K , James , D J , Keisler , R , Kuehn , K , Kuropatkin , N , Lahav , O , Lima , M , Marshall , J L , McDonald , M , Melchior , P , Miller , C J , Miquel , R , Nord , B , Ogando , R , Omori , Y , Plazas , A A , Rapetti , D , Reichardt , C L , Romer , A K , Roodman , A , Saliwanchik , B R , Sanchez , E , Schubnell , M , Sevilla-Noarbe , I , Sheldon , E , Smith , R C , Soares-Santos , M , Sobreira , F , Stark , A , Suchyta , E , Swanson , M E C , Tarle , G , Thomas , D , Vieira , J D , Walker , A R & Whitehorn , N 2016 , ' Detection of the kinematic Sunyaev-Zel'dovich effect with DES Year 1 and SPT ' Monthly Notices of the Royal Astronomical Society , vol 461 , no. 3 , pp. 3172-3193 . DOI:10.1093/mnras/stw1455 astro-ph.CO galaxies: clusters: general cosmic background radiation large-scale structure of Universe RCUK STFC ST/L000636/1 /dk/atira/pure/core/subjects/cosmology Cosmology and Gravitation article 2016 ftunivportsmpubl https://doi.org/10.1093/mnras/stw1455 2017-09-28T19:36:51Z We detect the kinematic Sunyaev-Zel'dovich (kSZ) effect with a statistical significance of 4.2σ by combining a cluster catalogue derived from the first year data of the Dark Energy Survey with cosmic microwave background temperature maps from the South Pole Telescope Sunyaev-Zel'dovich Survey. This measurement is performed with a differential statistic that isolates the pairwise kSZ signal, providing the first detection of the large-scale, pairwise motion of clusters using redshifts derived from photometric data. By fitting the pairwise kSZ signal to a theoretical template, we measure the average central optical depth of the cluster sample, τ¯e=(3.75±0.89)×10−3τ¯e=(3.75±0.89)×10−3. We compare the extracted signal to realistic simulations and find good agreement with respect to the signal to noise, the constraint on τ¯eτ¯e, and the corresponding gas fraction. High-precision measurements of the pairwise kSZ signal with future data will be able to place constraints on the baryonic physics of galaxy clusters, and could be used to probe gravity on scales ≳100 Mpc. Article in Journal/Newspaper South pole University of Portsmouth: Portsmouth Research Portal South Pole Monthly Notices of the Royal Astronomical Society 461 3 3172 3193 |