Searching for anisotropic cosmic birefringence with polarization data from SPTpol
We present a search for anisotropic cosmic birefringence in 500 deg² of southern sky observed at 150 GHz with the SPTpol camera on the South Pole Telescope. We reconstruct a map of cosmic polarization rotation anisotropies using higher-order correlations between the observed cosmic microwave backgro...
Published in: | Physical Review D |
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Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
Published: |
American Physical Society
2020
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Subjects: | |
Online Access: | https://authors.library.caltech.edu/105839/ https://authors.library.caltech.edu/105839/1/PhysRevD.102.083504.pdf https://authors.library.caltech.edu/105839/2/2006.08061.pdf https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217 |
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openpolar |
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Open Polar |
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Caltech Authors (California Institute of Technology) |
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ftcaltechauth |
language |
English |
description |
We present a search for anisotropic cosmic birefringence in 500 deg² of southern sky observed at 150 GHz with the SPTpol camera on the South Pole Telescope. We reconstruct a map of cosmic polarization rotation anisotropies using higher-order correlations between the observed cosmic microwave background (CMB) E and B fields. We then measure the angular power spectrum of this map, which is found to be consistent with zero. The nondetection is translated into an upper limit on the amplitude of the scale-invariant cosmic rotation power spectrum, L(L+1)C^(αα)_L/2π < 0.10×10⁻⁴ rad² (0.033 deg², 95% C.L.). This upper limit can be used to place constraints on the strength of primordial magnetic fields, B₁ _(Mpc) < 17 nG (95% C.L.), and on the coupling constant of the Chern-Simons electromagnetic term g_(aγ) < 4.0×10⁻²/H_I (95% C.L.), where H_I is the inflationary Hubble scale. For the first time, we also cross-correlate the CMB temperature fluctuations with the reconstructed rotation angle map, a signal expected to be nonvanishing in certain theoretical scenarios, and find no detectable signal. We perform a suite of systematics and consistency checks and find no evidence for contamination. |
format |
Article in Journal/Newspaper |
author |
Bianchini, F. Wu, W. L. K. Ade, P. A. R. Anderson, A. J. Austermann, J. E. Avva, J. S. Balkenhol, L. Baxter, E. Beall, J. A. Bender, A. N. Benson, B. A. Bleem, L. E. Carlstrom, J. E. Chang, C. L. Chaubal, P. Chiang, H. C. Chou, T. L. Citron, R. Moran, C. Corbett Crawford, T. M. Crites, A. T. de Haan, T. Dobbs, M. A. Everett, W. Gallicchio, J. George, E. M. Gilbert, A. Gupta, N. Halverson, N. W. Henning, J. W. Hilton, G. C. Holder, G. P. Holzapfel, W. L. Hrubes, J. D. Huang, N. Hubmayr, J. Irwin, K. D. Knox, L. Lee, A. T. Li, D. Lowitz, A. Manzotti, A. McMahon, J. J. Meyer, S. S. Millea, M. Mocanu, L. M. Montgomery, J. Nadolski, A. Natoli, T. Nibarger, J. P. Noble, G. Novosad, V. Omori, Y. Padin, S. Patil, S. Pryke, C. Reichardt, C. L. Ruhl, J. E. Saliwanchik, B. R. Schaffer, K. K. Sievers, C. Simard, G. Smecher, G. Stark, A. A. Story, K. T. Tucker, C. Vanderlinde, K. Veach, T. Vieira, J. D. Wang, G. Whitehorn, N. Yefremenko, V. |
spellingShingle |
Bianchini, F. Wu, W. L. K. Ade, P. A. R. Anderson, A. J. Austermann, J. E. Avva, J. S. Balkenhol, L. Baxter, E. Beall, J. A. Bender, A. N. Benson, B. A. Bleem, L. E. Carlstrom, J. E. Chang, C. L. Chaubal, P. Chiang, H. C. Chou, T. L. Citron, R. Moran, C. Corbett Crawford, T. M. Crites, A. T. de Haan, T. Dobbs, M. A. Everett, W. Gallicchio, J. George, E. M. Gilbert, A. Gupta, N. Halverson, N. W. Henning, J. W. Hilton, G. C. Holder, G. P. Holzapfel, W. L. Hrubes, J. D. Huang, N. Hubmayr, J. Irwin, K. D. Knox, L. Lee, A. T. Li, D. Lowitz, A. Manzotti, A. McMahon, J. J. Meyer, S. S. Millea, M. Mocanu, L. M. Montgomery, J. Nadolski, A. Natoli, T. Nibarger, J. P. Noble, G. Novosad, V. Omori, Y. Padin, S. Patil, S. Pryke, C. Reichardt, C. L. Ruhl, J. E. Saliwanchik, B. R. Schaffer, K. K. Sievers, C. Simard, G. Smecher, G. Stark, A. A. Story, K. T. Tucker, C. Vanderlinde, K. Veach, T. Vieira, J. D. Wang, G. Whitehorn, N. Yefremenko, V. Searching for anisotropic cosmic birefringence with polarization data from SPTpol |
author_facet |
Bianchini, F. Wu, W. L. K. Ade, P. A. R. Anderson, A. J. Austermann, J. E. Avva, J. S. Balkenhol, L. Baxter, E. Beall, J. A. Bender, A. N. Benson, B. A. Bleem, L. E. Carlstrom, J. E. Chang, C. L. Chaubal, P. Chiang, H. C. Chou, T. L. Citron, R. Moran, C. Corbett Crawford, T. M. Crites, A. T. de Haan, T. Dobbs, M. A. Everett, W. Gallicchio, J. George, E. M. Gilbert, A. Gupta, N. Halverson, N. W. Henning, J. W. Hilton, G. C. Holder, G. P. Holzapfel, W. L. Hrubes, J. D. Huang, N. Hubmayr, J. Irwin, K. D. Knox, L. Lee, A. T. Li, D. Lowitz, A. Manzotti, A. McMahon, J. J. Meyer, S. S. Millea, M. Mocanu, L. M. Montgomery, J. Nadolski, A. Natoli, T. Nibarger, J. P. Noble, G. Novosad, V. Omori, Y. Padin, S. Patil, S. Pryke, C. Reichardt, C. L. Ruhl, J. E. Saliwanchik, B. R. Schaffer, K. K. Sievers, C. Simard, G. Smecher, G. Stark, A. A. Story, K. T. Tucker, C. Vanderlinde, K. Veach, T. Vieira, J. D. Wang, G. Whitehorn, N. Yefremenko, V. |
author_sort |
Bianchini, F. |
title |
Searching for anisotropic cosmic birefringence with polarization data from SPTpol |
title_short |
Searching for anisotropic cosmic birefringence with polarization data from SPTpol |
title_full |
Searching for anisotropic cosmic birefringence with polarization data from SPTpol |
title_fullStr |
Searching for anisotropic cosmic birefringence with polarization data from SPTpol |
title_full_unstemmed |
Searching for anisotropic cosmic birefringence with polarization data from SPTpol |
title_sort |
searching for anisotropic cosmic birefringence with polarization data from sptpol |
publisher |
American Physical Society |
publishDate |
2020 |
url |
https://authors.library.caltech.edu/105839/ https://authors.library.caltech.edu/105839/1/PhysRevD.102.083504.pdf https://authors.library.caltech.edu/105839/2/2006.08061.pdf https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217 |
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ENVELOPE(158.317,158.317,-80.867,-80.867) |
geographic |
Hubble South Pole |
geographic_facet |
Hubble South Pole |
genre |
South pole |
genre_facet |
South pole |
op_relation |
https://authors.library.caltech.edu/105839/1/PhysRevD.102.083504.pdf https://authors.library.caltech.edu/105839/2/2006.08061.pdf Bianchini, F. and Wu, W. L. K. and Ade, P. A. R. and Anderson, A. J. and Austermann, J. E. and Avva, J. S. and Balkenhol, L. and Baxter, E. and Beall, J. A. and Bender, A. N. and Benson, B. A. and Bleem, L. E. and Carlstrom, J. E. and Chang, C. L. and Chaubal, P. and Chiang, H. C. and Chou, T. L. and Citron, R. and Moran, C. Corbett and Crawford, T. M. and Crites, A. T. and de Haan, T. and Dobbs, M. A. and Everett, W. and Gallicchio, J. and George, E. M. and Gilbert, A. and Gupta, N. and Halverson, N. W. and Henning, J. W. and Hilton, G. C. and Holder, G. P. and Holzapfel, W. L. and Hrubes, J. D. and Huang, N. and Hubmayr, J. and Irwin, K. D. and Knox, L. and Lee, A. T. and Li, D. and Lowitz, A. and Manzotti, A. and McMahon, J. J. and Meyer, S. S. and Millea, M. and Mocanu, L. M. and Montgomery, J. and Nadolski, A. and Natoli, T. and Nibarger, J. P. and Noble, G. and Novosad, V. and Omori, Y. and Padin, S. and Patil, S. and Pryke, C. and Reichardt, C. L. and Ruhl, J. E. and Saliwanchik, B. R. and Schaffer, K. K. and Sievers, C. and Simard, G. and Smecher, G. and Stark, A. A. and Story, K. T. and Tucker, C. and Vanderlinde, K. and Veach, T. and Vieira, J. D. and Wang, G. and Whitehorn, N. and Yefremenko, V. (2020) Searching for anisotropic cosmic birefringence with polarization data from SPTpol. Physical Review D, 102 (8). Art. No. 083504. ISSN 2470-0010. doi:10.1103/physrevd.102.083504. https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217 <https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217> |
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https://doi.org/10.1103/physrevd.102.083504 |
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Physical Review D |
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102 |
container_issue |
8 |
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ftcaltechauth:oai:authors.library.caltech.edu:105839 2023-05-15T18:22:39+02:00 Searching for anisotropic cosmic birefringence with polarization data from SPTpol Bianchini, F. Wu, W. L. K. Ade, P. A. R. Anderson, A. J. Austermann, J. E. Avva, J. S. Balkenhol, L. Baxter, E. Beall, J. A. Bender, A. N. Benson, B. A. Bleem, L. E. Carlstrom, J. E. Chang, C. L. Chaubal, P. Chiang, H. C. Chou, T. L. Citron, R. Moran, C. Corbett Crawford, T. M. Crites, A. T. de Haan, T. Dobbs, M. A. Everett, W. Gallicchio, J. George, E. M. Gilbert, A. Gupta, N. Halverson, N. W. Henning, J. W. Hilton, G. C. Holder, G. P. Holzapfel, W. L. Hrubes, J. D. Huang, N. Hubmayr, J. Irwin, K. D. Knox, L. Lee, A. T. Li, D. Lowitz, A. Manzotti, A. McMahon, J. J. Meyer, S. S. Millea, M. Mocanu, L. M. Montgomery, J. Nadolski, A. Natoli, T. Nibarger, J. P. Noble, G. Novosad, V. Omori, Y. Padin, S. Patil, S. Pryke, C. Reichardt, C. L. Ruhl, J. E. Saliwanchik, B. R. Schaffer, K. K. Sievers, C. Simard, G. Smecher, G. Stark, A. A. Story, K. T. Tucker, C. Vanderlinde, K. Veach, T. Vieira, J. D. Wang, G. Whitehorn, N. Yefremenko, V. 2020-10-15 application/pdf https://authors.library.caltech.edu/105839/ https://authors.library.caltech.edu/105839/1/PhysRevD.102.083504.pdf https://authors.library.caltech.edu/105839/2/2006.08061.pdf https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217 en eng American Physical Society https://authors.library.caltech.edu/105839/1/PhysRevD.102.083504.pdf https://authors.library.caltech.edu/105839/2/2006.08061.pdf Bianchini, F. and Wu, W. L. K. and Ade, P. A. R. and Anderson, A. J. and Austermann, J. E. and Avva, J. S. and Balkenhol, L. and Baxter, E. and Beall, J. A. and Bender, A. N. and Benson, B. A. and Bleem, L. E. and Carlstrom, J. E. and Chang, C. L. and Chaubal, P. and Chiang, H. C. and Chou, T. L. and Citron, R. and Moran, C. Corbett and Crawford, T. M. and Crites, A. T. and de Haan, T. and Dobbs, M. A. and Everett, W. and Gallicchio, J. and George, E. M. and Gilbert, A. and Gupta, N. and Halverson, N. W. and Henning, J. W. and Hilton, G. C. and Holder, G. P. and Holzapfel, W. L. and Hrubes, J. D. and Huang, N. and Hubmayr, J. and Irwin, K. D. and Knox, L. and Lee, A. T. and Li, D. and Lowitz, A. and Manzotti, A. and McMahon, J. J. and Meyer, S. S. and Millea, M. and Mocanu, L. M. and Montgomery, J. and Nadolski, A. and Natoli, T. and Nibarger, J. P. and Noble, G. and Novosad, V. and Omori, Y. and Padin, S. and Patil, S. and Pryke, C. and Reichardt, C. L. and Ruhl, J. E. and Saliwanchik, B. R. and Schaffer, K. K. and Sievers, C. and Simard, G. and Smecher, G. and Stark, A. A. and Story, K. T. and Tucker, C. and Vanderlinde, K. and Veach, T. and Vieira, J. D. and Wang, G. and Whitehorn, N. and Yefremenko, V. (2020) Searching for anisotropic cosmic birefringence with polarization data from SPTpol. Physical Review D, 102 (8). Art. No. 083504. ISSN 2470-0010. doi:10.1103/physrevd.102.083504. https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217 <https://resolver.caltech.edu/CaltechAUTHORS:20201006-112037217> other Article PeerReviewed 2020 ftcaltechauth https://doi.org/10.1103/physrevd.102.083504 2021-11-18T19:00:29Z We present a search for anisotropic cosmic birefringence in 500 deg² of southern sky observed at 150 GHz with the SPTpol camera on the South Pole Telescope. We reconstruct a map of cosmic polarization rotation anisotropies using higher-order correlations between the observed cosmic microwave background (CMB) E and B fields. We then measure the angular power spectrum of this map, which is found to be consistent with zero. The nondetection is translated into an upper limit on the amplitude of the scale-invariant cosmic rotation power spectrum, L(L+1)C^(αα)_L/2π < 0.10×10⁻⁴ rad² (0.033 deg², 95% C.L.). This upper limit can be used to place constraints on the strength of primordial magnetic fields, B₁ _(Mpc) < 17 nG (95% C.L.), and on the coupling constant of the Chern-Simons electromagnetic term g_(aγ) < 4.0×10⁻²/H_I (95% C.L.), where H_I is the inflationary Hubble scale. For the first time, we also cross-correlate the CMB temperature fluctuations with the reconstructed rotation angle map, a signal expected to be nonvanishing in certain theoretical scenarios, and find no detectable signal. We perform a suite of systematics and consistency checks and find no evidence for contamination. Article in Journal/Newspaper South pole Caltech Authors (California Institute of Technology) Hubble ENVELOPE(158.317,158.317,-80.867,-80.867) South Pole Physical Review D 102 8 |