A demonstration of improved constraints on primordial gravitational waves with delensing

We present a constraint on the tensor-to-scalar ratio, r, derived from measurements of cosmic microwave background (CMB) polarization B-modes with “delensing,” whereby the uncertainty on r contributed by the sample variance of the gravitational lensing B-modes is reduced by cross-correlating against...

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Published in:Physical Review D
Main Authors: Ade, Peter A. R., Ahmed, Z., Amiri, M., Anderson, Atholl J., Austermann, Jason E., Avva, J. S., Barkats, D., Basu Thakur, R., Beall, James A., Bender, A. N., Benson, Bradford A., Bianchini, Federico, Bischoff, C. A., Bleem, Lindsey E., Bock, James J., Boenish, H., Bullock, E., Buza, V., Carlstrom, John E., Chang, C. L., Cheshire IV, J. R., Chiang, Herman Cynthia, Chou, T.-L., Citron, R., Connors, J., Corbett Moran, Christine, Cornelison, J., Crawford, Thomas M., Crites, Abigail T., Crumrine, M., Cukierman, A., de Haan, Tijmen, Dierickx, M., Dobbs, Matthew Adam, Duband, L., Everett, Wendeline B., Fatigoni, S., Filippini, Jeffrey P., Fliescher, S., Gallicchio, J., George, Elizabeth M., Germaine, T. St., Goeckner-Wald, N., Goldfinger, D. C., Grayson, Jim, Gupta, N., Hall, G., Halpern, M., Halverson, Nils W., Harrison, S., Henderson, S., Henning, Jason W., Hildebrandt, S. R., Hilton, Gene C., Holder, Gilbert P., Holzapfel, William Laird, Hrubes, J. Dana, Huang, N., Hubmayr, Johannes, Hui, H., Irwin, Kent D., Kang, J., Karkare, K. S., Karpel, E., Kefeli, S., Kernasovskiy, S. A., Knox, Lloyd E., Kovac, J. M., Kuo, C. L., Lau, K., Lee, A. T., Leitch, E. M., Li, D., Lowitz, A., Manzotti, Alessandro, McMahon, J. J., Megerian, Krikor G., Meyer, S. S., Millea, Marius, Mocanu, Laura-Monica
Format: Article in Journal/Newspaper
Language:English
Published: American Physical Society 2022
Subjects:
Online Access:http://hdl.handle.net/10852/92868
http://urn.nb.no/URN:NBN:no-95464
https://doi.org/10.1103/PhysRevD.103.022004
id ftoslouniv:oai:www.duo.uio.no:10852/92868
record_format openpolar
institution Open Polar
collection Universitet i Oslo: Digitale utgivelser ved UiO (DUO)
op_collection_id ftoslouniv
language English
topic VDP::Astrofysikk
astronomi: 438
spellingShingle VDP::Astrofysikk
astronomi: 438
Ade, Peter A. R.
Ahmed, Z.
Amiri, M.
Anderson, Atholl J.
Austermann, Jason E.
Avva, J. S.
Barkats, D.
Basu Thakur, R.
Beall, James A.
Bender, A. N.
Benson, Bradford A.
Bianchini, Federico
Bischoff, C. A.
Bleem, Lindsey E.
Bock, James J.
Boenish, H.
Bullock, E.
Buza, V.
Carlstrom, John E.
Chang, C. L.
Cheshire IV, J. R.
Chiang, Herman Cynthia
Chou, T.-L.
Citron, R.
Connors, J.
Corbett Moran, Christine
Cornelison, J.
Crawford, Thomas M.
Crites, Abigail T.
Crumrine, M.
Cukierman, A.
de Haan, Tijmen
Dierickx, M.
Dobbs, Matthew Adam
Duband, L.
Everett, Wendeline B.
Fatigoni, S.
Filippini, Jeffrey P.
Fliescher, S.
Gallicchio, J.
George, Elizabeth M.
Germaine, T. St.
Goeckner-Wald, N.
Goldfinger, D. C.
Grayson, Jim
Gupta, N.
Hall, G.
Halpern, M.
Halverson, Nils W.
Harrison, S.
Henderson, S.
Henning, Jason W.
Hildebrandt, S. R.
Hilton, Gene C.
Holder, Gilbert P.
Holzapfel, William Laird
Hrubes, J. Dana
Huang, N.
Hubmayr, Johannes
Hui, H.
Irwin, Kent D.
Kang, J.
Karkare, K. S.
Karpel, E.
Kefeli, S.
Kernasovskiy, S. A.
Knox, Lloyd E.
Kovac, J. M.
Kuo, C. L.
Lau, K.
Lee, A. T.
Leitch, E. M.
Li, D.
Lowitz, A.
Manzotti, Alessandro
McMahon, J. J.
Megerian, Krikor G.
Meyer, S. S.
Millea, Marius
Mocanu, Laura-Monica
A demonstration of improved constraints on primordial gravitational waves with delensing
topic_facet VDP::Astrofysikk
astronomi: 438
description We present a constraint on the tensor-to-scalar ratio, r, derived from measurements of cosmic microwave background (CMB) polarization B-modes with “delensing,” whereby the uncertainty on r contributed by the sample variance of the gravitational lensing B-modes is reduced by cross-correlating against a lensing B-mode template. This template is constructed by combining an estimate of the polarized CMB with a tracer of the projected large-scale structure. The large-scale-structure tracer used is a map of the cosmic infrared background derived from Planck satellite data, while the polarized CMB map comes from a combination of South Pole Telescope, bicep/Keck, and Planck data. We expand the bicep/Keck likelihood analysis framework to accept a lensing template and apply it to the bicep/Keck dataset collected through 2014 using the same parametric foreground modeling as in the previous analysis. From simulations, we find that the uncertainty on r is reduced by ∼10%, from σ(r)=0.024 to 0.022, which can be compared with a ∼26% reduction obtained when using a perfect lensing template or if there were zero lensing B-modes. Applying the technique to the real data, the constraint on r is improved from r0.05<0.090 to r0.05<0.082 (95% C.L.). This is the first demonstration of improvement in an r constraint through delensing.
format Article in Journal/Newspaper
author Ade, Peter A. R.
Ahmed, Z.
Amiri, M.
Anderson, Atholl J.
Austermann, Jason E.
Avva, J. S.
Barkats, D.
Basu Thakur, R.
Beall, James A.
Bender, A. N.
Benson, Bradford A.
Bianchini, Federico
Bischoff, C. A.
Bleem, Lindsey E.
Bock, James J.
Boenish, H.
Bullock, E.
Buza, V.
Carlstrom, John E.
Chang, C. L.
Cheshire IV, J. R.
Chiang, Herman Cynthia
Chou, T.-L.
Citron, R.
Connors, J.
Corbett Moran, Christine
Cornelison, J.
Crawford, Thomas M.
Crites, Abigail T.
Crumrine, M.
Cukierman, A.
de Haan, Tijmen
Dierickx, M.
Dobbs, Matthew Adam
Duband, L.
Everett, Wendeline B.
Fatigoni, S.
Filippini, Jeffrey P.
Fliescher, S.
Gallicchio, J.
George, Elizabeth M.
Germaine, T. St.
Goeckner-Wald, N.
Goldfinger, D. C.
Grayson, Jim
Gupta, N.
Hall, G.
Halpern, M.
Halverson, Nils W.
Harrison, S.
Henderson, S.
Henning, Jason W.
Hildebrandt, S. R.
Hilton, Gene C.
Holder, Gilbert P.
Holzapfel, William Laird
Hrubes, J. Dana
Huang, N.
Hubmayr, Johannes
Hui, H.
Irwin, Kent D.
Kang, J.
Karkare, K. S.
Karpel, E.
Kefeli, S.
Kernasovskiy, S. A.
Knox, Lloyd E.
Kovac, J. M.
Kuo, C. L.
Lau, K.
Lee, A. T.
Leitch, E. M.
Li, D.
Lowitz, A.
Manzotti, Alessandro
McMahon, J. J.
Megerian, Krikor G.
Meyer, S. S.
Millea, Marius
Mocanu, Laura-Monica
author_facet Ade, Peter A. R.
Ahmed, Z.
Amiri, M.
Anderson, Atholl J.
Austermann, Jason E.
Avva, J. S.
Barkats, D.
Basu Thakur, R.
Beall, James A.
Bender, A. N.
Benson, Bradford A.
Bianchini, Federico
Bischoff, C. A.
Bleem, Lindsey E.
Bock, James J.
Boenish, H.
Bullock, E.
Buza, V.
Carlstrom, John E.
Chang, C. L.
Cheshire IV, J. R.
Chiang, Herman Cynthia
Chou, T.-L.
Citron, R.
Connors, J.
Corbett Moran, Christine
Cornelison, J.
Crawford, Thomas M.
Crites, Abigail T.
Crumrine, M.
Cukierman, A.
de Haan, Tijmen
Dierickx, M.
Dobbs, Matthew Adam
Duband, L.
Everett, Wendeline B.
Fatigoni, S.
Filippini, Jeffrey P.
Fliescher, S.
Gallicchio, J.
George, Elizabeth M.
Germaine, T. St.
Goeckner-Wald, N.
Goldfinger, D. C.
Grayson, Jim
Gupta, N.
Hall, G.
Halpern, M.
Halverson, Nils W.
Harrison, S.
Henderson, S.
Henning, Jason W.
Hildebrandt, S. R.
Hilton, Gene C.
Holder, Gilbert P.
Holzapfel, William Laird
Hrubes, J. Dana
Huang, N.
Hubmayr, Johannes
Hui, H.
Irwin, Kent D.
Kang, J.
Karkare, K. S.
Karpel, E.
Kefeli, S.
Kernasovskiy, S. A.
Knox, Lloyd E.
Kovac, J. M.
Kuo, C. L.
Lau, K.
Lee, A. T.
Leitch, E. M.
Li, D.
Lowitz, A.
Manzotti, Alessandro
McMahon, J. J.
Megerian, Krikor G.
Meyer, S. S.
Millea, Marius
Mocanu, Laura-Monica
author_sort Ade, Peter A. R.
title A demonstration of improved constraints on primordial gravitational waves with delensing
title_short A demonstration of improved constraints on primordial gravitational waves with delensing
title_full A demonstration of improved constraints on primordial gravitational waves with delensing
title_fullStr A demonstration of improved constraints on primordial gravitational waves with delensing
title_full_unstemmed A demonstration of improved constraints on primordial gravitational waves with delensing
title_sort demonstration of improved constraints on primordial gravitational waves with delensing
publisher American Physical Society
publishDate 2022
url http://hdl.handle.net/10852/92868
http://urn.nb.no/URN:NBN:no-95464
https://doi.org/10.1103/PhysRevD.103.022004
geographic South Pole
geographic_facet South Pole
genre South pole
genre_facet South pole
op_source 2470-0010
op_relation http://urn.nb.no/URN:NBN:no-95464
Ade, Peter A. R. Ahmed, Z. Amiri, M. Anderson, Atholl J. Austermann, Jason E. Avva, J. S. Barkats, D. Basu Thakur, R. Beall, James A. Bender, A. N. Benson, Bradford A. Bianchini, Federico Bischoff, C. A. Bleem, Lindsey E. Bock, James J. Boenish, H. Bullock, E. Buza, V. Carlstrom, John E. Chang, C. L. Cheshire IV, J. R. Chiang, Herman Cynthia Chou, T.-L. Citron, R. Connors, J. Corbett Moran, Christine Cornelison, J. Crawford, Thomas M. Crites, Abigail T. Crumrine, M. Cukierman, A. de Haan, Tijmen Dierickx, M. Dobbs, Matthew Adam Duband, L. Everett, Wendeline B. Fatigoni, S. Filippini, Jeffrey P. Fliescher, S. Gallicchio, J. George, Elizabeth M. Germaine, T. St. Goeckner-Wald, N. Goldfinger, D. C. Grayson, Jim Gupta, N. Hall, G. Halpern, M. Halverson, Nils W. Harrison, S. Henderson, S. Henning, Jason W. Hildebrandt, S. R. Hilton, Gene C. Holder, Gilbert P. Holzapfel, William Laird Hrubes, J. Dana Huang, N. Hubmayr, Johannes Hui, H. Irwin, Kent D. Kang, J. Karkare, K. S. Karpel, E. Kefeli, S. Kernasovskiy, S. A. Knox, Lloyd E. Kovac, J. M. Kuo, C. L. Lau, K. Lee, A. T. Leitch, E. M. Li, D. Lowitz, A. Manzotti, Alessandro McMahon, J. J. Megerian, Krikor G. Meyer, S. S. Millea, Marius Mocanu, Laura-Monica . A demonstration of improved constraints on primordial gravitational waves with delensing. Physical Review D. 2021, 103(2)
http://hdl.handle.net/10852/92868
2002812
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spelling ftoslouniv:oai:www.duo.uio.no:10852/92868 2023-05-15T18:22:48+02:00 A demonstration of improved constraints on primordial gravitational waves with delensing Ade, Peter A. R. Ahmed, Z. Amiri, M. Anderson, Atholl J. Austermann, Jason E. Avva, J. S. Barkats, D. Basu Thakur, R. Beall, James A. Bender, A. N. Benson, Bradford A. Bianchini, Federico Bischoff, C. A. Bleem, Lindsey E. Bock, James J. Boenish, H. Bullock, E. Buza, V. Carlstrom, John E. Chang, C. L. Cheshire IV, J. R. Chiang, Herman Cynthia Chou, T.-L. Citron, R. Connors, J. Corbett Moran, Christine Cornelison, J. Crawford, Thomas M. Crites, Abigail T. Crumrine, M. Cukierman, A. de Haan, Tijmen Dierickx, M. Dobbs, Matthew Adam Duband, L. Everett, Wendeline B. Fatigoni, S. Filippini, Jeffrey P. Fliescher, S. Gallicchio, J. George, Elizabeth M. Germaine, T. St. Goeckner-Wald, N. Goldfinger, D. C. Grayson, Jim Gupta, N. Hall, G. Halpern, M. Halverson, Nils W. Harrison, S. Henderson, S. Henning, Jason W. Hildebrandt, S. R. Hilton, Gene C. Holder, Gilbert P. Holzapfel, William Laird Hrubes, J. Dana Huang, N. Hubmayr, Johannes Hui, H. Irwin, Kent D. Kang, J. Karkare, K. S. Karpel, E. Kefeli, S. Kernasovskiy, S. A. Knox, Lloyd E. Kovac, J. M. Kuo, C. L. Lau, K. Lee, A. T. Leitch, E. M. Li, D. Lowitz, A. Manzotti, Alessandro McMahon, J. J. Megerian, Krikor G. Meyer, S. S. Millea, Marius Mocanu, Laura-Monica 2022-02-17T12:40:49Z http://hdl.handle.net/10852/92868 http://urn.nb.no/URN:NBN:no-95464 https://doi.org/10.1103/PhysRevD.103.022004 EN eng American Physical Society http://urn.nb.no/URN:NBN:no-95464 Ade, Peter A. R. Ahmed, Z. Amiri, M. Anderson, Atholl J. Austermann, Jason E. Avva, J. S. Barkats, D. Basu Thakur, R. Beall, James A. Bender, A. N. Benson, Bradford A. Bianchini, Federico Bischoff, C. A. Bleem, Lindsey E. Bock, James J. Boenish, H. Bullock, E. Buza, V. Carlstrom, John E. Chang, C. L. Cheshire IV, J. R. Chiang, Herman Cynthia Chou, T.-L. Citron, R. Connors, J. Corbett Moran, Christine Cornelison, J. Crawford, Thomas M. Crites, Abigail T. Crumrine, M. Cukierman, A. de Haan, Tijmen Dierickx, M. Dobbs, Matthew Adam Duband, L. Everett, Wendeline B. Fatigoni, S. Filippini, Jeffrey P. Fliescher, S. Gallicchio, J. George, Elizabeth M. Germaine, T. St. Goeckner-Wald, N. Goldfinger, D. C. Grayson, Jim Gupta, N. Hall, G. Halpern, M. Halverson, Nils W. Harrison, S. Henderson, S. Henning, Jason W. Hildebrandt, S. R. Hilton, Gene C. Holder, Gilbert P. Holzapfel, William Laird Hrubes, J. Dana Huang, N. Hubmayr, Johannes Hui, H. Irwin, Kent D. Kang, J. Karkare, K. S. Karpel, E. Kefeli, S. Kernasovskiy, S. A. Knox, Lloyd E. Kovac, J. M. Kuo, C. L. Lau, K. Lee, A. T. Leitch, E. M. Li, D. Lowitz, A. Manzotti, Alessandro McMahon, J. J. Megerian, Krikor G. Meyer, S. S. Millea, Marius Mocanu, Laura-Monica . A demonstration of improved constraints on primordial gravitational waves with delensing. Physical Review D. 2021, 103(2) http://hdl.handle.net/10852/92868 2002812 info:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Physical Review D&rft.volume=103&rft.spage=&rft.date=2021 Physical Review D 103 2 23 https://doi.org/10.1103/PhysRevD.103.022004 URN:NBN:no-95464 Fulltext https://www.duo.uio.no/bitstream/handle/10852/92868/1/PhysRevD.103.022004.pdf 2470-0010 VDP::Astrofysikk astronomi: 438 Journal article Tidsskriftartikkel Peer reviewed PublishedVersion 2022 ftoslouniv https://doi.org/10.1103/PhysRevD.103.022004 2022-03-30T22:33:50Z We present a constraint on the tensor-to-scalar ratio, r, derived from measurements of cosmic microwave background (CMB) polarization B-modes with “delensing,” whereby the uncertainty on r contributed by the sample variance of the gravitational lensing B-modes is reduced by cross-correlating against a lensing B-mode template. This template is constructed by combining an estimate of the polarized CMB with a tracer of the projected large-scale structure. The large-scale-structure tracer used is a map of the cosmic infrared background derived from Planck satellite data, while the polarized CMB map comes from a combination of South Pole Telescope, bicep/Keck, and Planck data. We expand the bicep/Keck likelihood analysis framework to accept a lensing template and apply it to the bicep/Keck dataset collected through 2014 using the same parametric foreground modeling as in the previous analysis. From simulations, we find that the uncertainty on r is reduced by ∼10%, from σ(r)=0.024 to 0.022, which can be compared with a ∼26% reduction obtained when using a perfect lensing template or if there were zero lensing B-modes. Applying the technique to the real data, the constraint on r is improved from r0.05<0.090 to r0.05<0.082 (95% C.L.). This is the first demonstration of improvement in an r constraint through delensing. Article in Journal/Newspaper South pole Universitet i Oslo: Digitale utgivelser ved UiO (DUO) South Pole Physical Review D 103 2