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Title: Probing cosmic inflation with the LiteBIRD cosmic microwave background polarization survey

Abstract

LiteBIRD, the Lite (Light) satellite for the study of B-mode polarization and Inflation from cosmic background Radiation Detection, is a space mission for primordial cosmology and fundamental physics. The Japan Aerospace Exploration Agency (JAXA) selected LiteBIRD in May 2019 as a strategic large-class (L-class) mission, with an expected launch in the late 2020s using JAXA’s H3 rocket. LiteBIRD is planned to orbit the Sun–Earth Lagrangian point L2, where it will map the cosmic microwave background polarization over the entire sky for three years, with three telescopes in 15 frequency bands between 34 and 448 GHz, to achieve an unprecedented total sensitivity of $$2.2\, \mu$$K-arcmin, with a typical angular resolution of 0.5° at 100 GHz. The primary scientific objective of LiteBIRD is to search for the signal from cosmic inflation, either making a discovery or ruling out well-motivated inflationary models. The measurements of LiteBIRD will also provide us with insight into the quantum nature of gravity and other new physics beyond the standard models of particle physics and cosmology. We provide an overview of the LiteBIRD project, including scientific objectives, mission and system requirements, operation concept, spacecraft and payload module design, expected scientific outcomes, potential design extensions, and synergies with other projects.

Authors:
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  1. Laboratoire de Physique de l’École Normale Supérieure, ENS, Université PSL, CNRS, Sorbonne Université, Université de Paris , F-75005 Paris , France
  2. University of California, San Diego, Department of Physics , San Diego, CA 92093-0424 , USA
  3. IRAP, Université de Toulouse , (Toulouse), 9, avenue du Colonel Roche BP 44346 31028 Toulouse Cedex 4 , France
  4. Institute of Theoretical Astrophysics, University of Oslo , Blindern 0315, OSLO , Norway
  5. Department of Physics, University of Oxford, Denys Wilkinson Building , Keble Road, Oxford OX1 3RH , UK;Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), UTIAS, The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan
  6. International School for Advanced Studies (SISSA) , Via Bonomea 265, I-34136 Trieste , Italy;INFN Sezione di Trieste , Via Valerio 2, I-34127 Trieste , Italy;IFPU, Via Beirut , 2, I-34151 Grignano, Trieste , Italy
  7. Instituto de Fisica de Cantabria (IFCA, CSIC-UC) , Avenida los Castros SN, E-39005 Santander , Spain
  8. Dipartimento di Fisica e Astronomia “G. Galilei”, Universita‘ degli Studi di Padova , Via Marzolo 8, I-35131 Padova , Italy;INFN Sezione di Padova , Via Marzolo 8, I-35131 Padova , Italy;INAF, Osservatorio Astronomico di Padova , Vicolo dell’Osservatorio 5, I-35122 Padova , Italy
  9. Stanford University, Department of Physics , CA 94305-4060 , USA
  10. University of California , Berkeley, Department of Physics, Berkeley, CA 94720 , USA
  11. Dipartimento di Fisica, Universita’ degli Studi di Milano , Via Celoria 16, I-20133 Milano , Italy;INFN Sezione di Milano, Via Celoria 16, I-20133 Milano, Italy
  12. Université de Paris, CNRS, Astroparticule et Cosmologie , F-75013 Paris , France
  13. School of Physics and Astronomy, Cardiff University , Cardiff CF24 3AA , UK
  14. Max Planck Institute for Astrophysics, Karl-Schwarzschild-Str. 1 , D-85748 Garching , Germany
  15. Dipartimento di Fisica, Università di Roma Tor Vergata, Via della Ricerca Scientifica 1, I-00133 Roma, Italy;INFN Sezione di Roma2, Università di Roma Tor Vergata, Via della Ricerca Scientifica 1, I-00133 Roma, Italy
  16. Univ. Grenoble Alpes , CNRS, LPSC-IN2P3, 53 avenue des Martyrs, F-38000 Grenoble , France
  17. David A. Dunlap Department of Astronomy and Astrophysics , 50 St George Street, Toronto, ON M5S 3H4 , Canada
  18. University of California , Berkeley, Department of Physics, Berkeley, CA 94720 , USA;University of California, Berkeley, Space Sciences Laboratory, Berkeley , CA 94720 , USA;Lawrence Berkeley National Laboratory (LBNL) , Computational Cosmology Center, Berkeley, CA 94720 , USA
  19. Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), UTIAS, The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan;University of Tokyo, School of Science, Research Center for the Early Universe , RESCEU, Tokyo 113-0033 , Japan
  20. Stanford University, Department of Physics , CA 94305-4060 , USA;Kavli Institute for Particle Astrophysics and Cosmology (KIPAC), Stanford University , Stanford, CA 94305 , USA
  21. Dipartimento di Fisica, Università La Sapienza , P.le A. Moro 2, I-00185 Roma , Italy;INFN Sezione di Roma , P.le A. Moro 2, I-00185 Roma , Italy
  22. Institute of Particle and Nuclear Studies (IPNS), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan
  23. Instituto de Fisica de Cantabria (IFCA, CSIC-UC) , Avenida los Castros SN, E-39005 Santander , Spain;Dpto. de Física Moderna, Universidad de Cantabria , Avda. los Castros s/n, E-39005 Santander , Spain
  24. INFN Sezione Milano Bicocca , Piazza della Scienza 3, I-20126 Milano , Italy
  25. McGill University, Physics Department, Montreal , QC H3A 0G4 , Canada
  26. Japan Aerospace Exploration Agency (JAXA), Institute of Space and Astronautical Science (ISAS) , Sagamihara, Kanagawa 252-5210 , Japan;The Graduate University for Advanced Studies (SOKENDAI), Miura District , Kanagawa 240-0115, Hayama , Japan
  27. Université Grenoble Alpes, CEA, IRIG-DSBT , F-38000 Grenoble , France
  28. Lawrence Berkeley National Laboratory (LBNL), Physics Division , Berkeley, CA 94720 , USA
  29. NASA Goddard Space Flight Center , Greenbelt, MD 20771 , USA
  30. INAF - OAS Bologna, Via Piero Gobetti 93/3, I-40129 Bologna, Italy;INFN Sezione di Bologna , Viale C. Berti Pichat 6/2, I-40127 Bologna , Italy
  31. INFN Sezione di Ferrara , Via Saragat 1, I-44122 Ferrara , Italy
  32. INFN Sezione Milano Bicocca , Piazza della Scienza 3, I-20126 Milano , Italy;University of Milano Bicocca , Physics Department, P.zza della Scienza 3, I-20126 Milan , Italy
  33. Instituto de Astrofísica de Canarias , E-38200 La Laguna, Tenerife, Canary Islands , Spain;Departamento de Astrofísica, Universidad de La Laguna (ULL) , E-38206 La Laguna, Tenerife , Spain
  34. Dipartimento di Fisica e Scienze della Terra, Università di Ferrara , Via Saragat 1, I-44122 Ferrara , Italy
  35. Université Paris-Saclay, CNRS, Institut d’Astrophysique Spatiale , F-91405 Orsay , France
  36. Universitäts-Sternwarte, Fakultät für Physik, Ludwig-Maximilians Universität München , Scheinerstr. 1, D-81679 München , Germany
  37. The Oskar Klein Centre, Department of Physics, Stockholm University , SE-106 91 Stockholm , Sweden
  38. Center for Astrophysics and Space Astronomy, University of Colorado , Boulder, CO 80309 , USA
  39. Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), UTIAS, The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan
  40. Institute of Particle and Nuclear Studies (IPNS), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan;The Graduate University for Advanced Studies (SOKENDAI), Miura District , Kanagawa 240-0115, Hayama , Japan;International Center for Quantum-field Measurement Systems for Studies of the Universe and Particles (QUP), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan
  41. Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), UTIAS, The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan;Institute of Particle and Nuclear Studies (IPNS), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan;Japan Aerospace Exploration Agency (JAXA), Institute of Space and Astronautical Science (ISAS) , Sagamihara, Kanagawa 252-5210 , Japan;The Graduate University for Advanced Studies (SOKENDAI), Miura District , Kanagawa 240-0115, Hayama , Japan;International Center for Quantum-field Measurement Systems for Studies of the Universe and Particles (QUP), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan
  42. Université Paris-Saclay , CNRS/IN2P3, IJCLab, F-91405 Orsay , France
  43. Department of Astrophysical Sciences, Peyton Hall , Princeton University, Princeton, NJ 08544 , USA
  44. Department of Physics and Astronomy, University of British Columbia , 6224 Agricultural Road, Vancouver, BC V6T 1Z1 , Canada
  45. Institut d’Astrophysique de Paris, CNRS/Sorbonne Université , 75014 Paris , France
  46. Saitama University , Saitama 338-8570 , Japan
  47. NIST Quantum Sensors Group, 325 Broadway, Boulder , CO 80305 , USA
  48. Nagoya University, Kobayashi-Masukawa Institute for the Origin of Particle and the Universe , Aichi 464-8602 , Japan
  49. ispace, inc. , Tokyo 103-0007 , Japan
  50. National Astronomical Observatory of Japan , Mitaka, Tokyo 181-8588 , Japan
  51. Okayama University, Department of Physics , Okayama 700-8530 , Japan
  52. Lawrence Berkeley National Laboratory (LBNL) , Computational Cosmology Center, Berkeley, CA 94720 , USA
  53. The Institute for Solid State Physics (ISSP), The University of Tokyo , Kashiwa, Chiba 277-8581 , Japan
  54. Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), UTIAS, The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan;Max Planck Institute for Astrophysics, Karl-Schwarzschild-Str. 1 , D-85748 Garching , Germany
  55. The University of Tokyo, Institute for Photon Science and Technology , Tokyo 113-0033 , Japan
  56. Stanford University, Department of Physics , CA 94305-4060 , USA;SLAC National Accelerator Laboratory, Kavli Institute for Particle Astrophysics and Cosmology (KIPAC) , Menlo Park, CA 94025 , USA
  57. University of California , Berkeley, Department of Physics, Berkeley, CA 94720 , USA;Lawrence Berkeley National Laboratory (LBNL), Physics Division , Berkeley, CA 94720 , USA;International Center for Quantum-field Measurement Systems for Studies of the Universe and Particles (QUP), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan
  58. University of California, Berkeley, Space Sciences Laboratory, Berkeley , CA 94720 , USA;Lawrence Berkeley National Laboratory (LBNL), Physics Division , Berkeley, CA 94720 , USA
  59. Space Science Data Center, Italian Space Agency , Via del Politecnico, I-00133 Roma , Italy
  60. Centre National d’Etudes Spatiales (CNES) , 18 avenue Edouard Belin 31 401 TOULOUSE CEDEX 4 , France
  61. Dipartimento di Fisica, Universita’ degli Studi di Milano , Via Celoria 16, I-20133 Milano , Italy
  62. INFN Sezione di Pisa , Largo Bruno Pontecorvo 3, I-56127 Pisa , Italy
  63. Dipartimento di Fisica e Astronomia “G. Galilei”, Universita‘ degli Studi di Padova , Via Marzolo 8, I-35131 Padova , Italy;INFN Sezione di Padova , Via Marzolo 8, I-35131 Padova , Italy;INAF, Osservatorio Astronomico di Padova , Vicolo dell’Osservatorio 5, I-35122 Padova , Italy;Gran Sasso Science Institute (GSSI) , Viale F. Crispi 7, I-67100, L’Aquila , Italy
  64. Japan Aerospace Exploration Agency (JAXA), Institute of Space and Astronautical Science (ISAS) , Sagamihara, Kanagawa 252-5210 , Japan
  65. Research Center for Nuclear Physics, Osaka University , Ibaraki, Osaka 567-0047 , Japan
  66. INAF - OAS Bologna, Via Piero Gobetti 93/3, I-40129 Bologna, Italy
  67. Japan Aerospace Exploration Agency (JAXA), Institute of Space and Astronautical Science (ISAS) , Sagamihara, Kanagawa 252-5210 , Japan;The University of Tokyo, Department of Astronomy , Tokyo 113-0033 , Japan
  68. INFN Sezione di Ferrara , Via Saragat 1, I-44122 Ferrara , Italy;Dipartimento di Fisica e Scienze della Terra, Università di Ferrara , Via Saragat 1, I-44122 Ferrara , Italy
  69. INFN Sezione di Ferrara , Via Saragat 1, I-44122 Ferrara , Italy;Dipartimento di Fisica e Scienze della Terra, Università di Ferrara , Via Saragat 1, I-44122 Ferrara , Italy;Université Paris-Saclay, CNRS, Institut d’Astrophysique Spatiale , F-91405 Orsay , France
  70. School of Physics and Astronomy, Cardiff University , Cardiff CF24 3AA , UK;Dipartimento di Fisica, Università La Sapienza , P.le A. Moro 2, I-00185 Roma , Italy;INFN Sezione di Roma , P.le A. Moro 2, I-00185 Roma , Italy
  71. Dipartimento di Fisica, Università di Roma Tor Vergata, Via della Ricerca Scientifica 1, I-00133 Roma, Italy;Lawrence Berkeley National Laboratory (LBNL) , Computational Cosmology Center, Berkeley, CA 94720 , USA
  72. Instituto de Fisica de Cantabria (IFCA, CSIC-UC) , Avenida los Castros SN, E-39005 Santander , Spain;Jodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, School of Natural Sciences, The University of Manchester , Oxford Road, Manchester M13 9PL , UK
  73. Laboratoire de Physique de l’École Normale Supérieure, ENS, Université PSL, CNRS, Sorbonne Université, Université de Paris , F-75005 Paris , France;Université Paris-Saclay, CNRS, Institut d’Astrophysique Spatiale , F-91405 Orsay , France;INAF-Osservatorio Astronomico di Cagliari , Via della Scienza 5, I-09047 Selargius , Italy
  74. Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), UTIAS, The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan;Okayama University, Department of Physics , Okayama 700-8530 , Japan
  75. Remeis-Observatory and Erlangen Centre for Astroparticle Physics, FAU Erlangen-Nürnberg , Sternwartstr. 7, D-96049 Bamberg , Germany
  76. Institute of Particle and Nuclear Studies (IPNS), High Energy Accelerator Research Organization (KEK) , Tsukuba, Ibaraki 305-0801 , Japan;Japan Aerospace Exploration Agency (JAXA), Institute of Space and Astronautical Science (ISAS) , Sagamihara, Kanagawa 252-5210 , Japan;The University of Tokyo, Department of Astronomy , Tokyo 113-0033 , Japan
  77. Japan Aerospace Exploration Agency (JAXA), Research and Development Directorate , Tsukuba, Ibaraki 305-8505 , Japan
  78. School of General and Management Studies, Suwa University of Science , 5000-1 Toyohira, Chino, Nagano 391-0292 , Japan
  79. Université de Paris, CNRS, Astroparticule et Cosmologie , F-75013 Paris , France;CNRS-UCB International Research Laboratory, Centre Pierre Binétruy , UMI2007, Berkeley, CA 94720 , USA
  80. Japan Aerospace Exploration Agency (JAXA), Institute of Space and Astronautical Science (ISAS) , Sagamihara, Kanagawa 252-5210 , Japan;The University of Tokyo, Department of Physics , Tokyo 113-0033 , Japan
  81. INFN Sezione di Pisa , Largo Bruno Pontecorvo 3, I-56127 Pisa , Italy;Dipartimento di Fisica, Università di Pisa , Largo B. Pontecorvo 3, I-56127 Pisa , Italy
  82. National Institute of Technology, Kagawa College , Kagawa 761-8058 , Japan
  83. Physics and Astronomy Dept., University College London (UCL) , London;Mullard Space Science Laboratory, University College London , London
Publication Date:
Research Org.:
SLAC National Accelerator Laboratory (SLAC), Menlo Park, CA (United States); Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Org.:
USDOE Office of Science (SC), Basic Energy Sciences (BES). Scientific User Facilities (SUF)
Contributing Org.:
LiteBIRD Collaboration
OSTI Identifier:
2002887
Alternate Identifier(s):
OSTI ID: 2228603
Grant/Contract Number:  
AC02-05CH11231; AC02-76SF00515
Resource Type:
Accepted Manuscript
Journal Name:
Progress of Theoretical and Experimental Physics
Additional Journal Information:
Journal Volume: 2023; Journal Issue: 4; Journal ID: ISSN 2050-3911
Publisher:
Physical Society of Japan
Country of Publication:
United States
Language:
English
Subject:
59 BASIC BIOLOGICAL SCIENCES

Citation Formats

Allys, E., Arnold, K., Aumont, J., Aurlien, R., Azzoni, S., Baccigalupi, C., Banday, A. J., Banerji, R., Barreiro, R. B., Bartolo, N., Bautista, L., Beck, D., Beckman, S., Bersanelli, M., Boulanger, F., Brilenkov, M., Bucher, M., Calabrese, E., Campeti, P., Carones, A., Casas, F. J., Catalano, A., Chan, V., Cheung, K., Chinone, Y., Clark, S. E., Columbro, F., D’Alessandro, G., de Bernardis, P., de Haan, T., de la Hoz, E., De Petris, M., Torre, S. Della, Diego-Palazuelos, P., Dobbs, M., Dotani, T., Duval, J. M., Elleflot, T., Eriksen, H. K., Errard, J., Essinger-Hileman, T., Finelli, F., Flauger, R., Franceschet, C., Fuskeland, U., Galloway, M., Ganga, K., Gerbino, M., Gervasi, M., Génova-Santos, R. T., Ghigna, T., Giardiello, S., Gjerløw, E., Grain, J., Grupp, F., Gruppuso, A., Gudmundsson, J. E., Halverson, N. W., Hargrave, P., Hasebe, T., Hasegawa, M., Hazumi, M., Henrot-Versillé, S., Hensley, B., Hergt, L. T., Herman, D., Hivon, E., Hlozek, R. A., Hornsby, A. L., Hoshino, Y., Hubmayr, J., Ichiki, K., Iida, T., Imada, H., Ishino, H., Jaehnig, G., Katayama, N., Kato, A., Keskitalo, R., Kisner, T., Kobayashi, Y., Kogut, A., Kohri, K., Komatsu, E., Komatsu, K., Konishi, K., Krachmalnicoff, N., Kuo, C. L., Lamagna, L., Lattanzi, M., Lee, A. T., Leloup, C., Levrier, F., Linder, E., Luzzi, G., Macias-Perez, J., Maciaszek, T., Maffei, B., Maino, D., Mandelli, S., Martínez-González, E., Masi, S., Massa, M., Matarrese, S., Matsuda, F. T., Matsumura, T., Mele, L., Migliaccio, M., Minami, Y., Moggi, A., Montgomery, J., Montier, L., Morgante, G., Mot, B., Nagano, Y., Nagasaki, T., Nagata, R., Nakano, R., Namikawa, T., Nati, F., Natoli, P., Nerval, S., Noviello, F., Odagiri, K., Oguri, S., Ohsaki, H., Pagano, L., Paiella, A., Paoletti, D., Passerini, A., Patanchon, G., Piacentini, F., Piat, M., Pisano, G., Polenta, G., Poletti, D., Prouvé, T., Puglisi, G., Rambaud, D., Raum, C., Realini, S., Reinecke, M., Remazeilles, M., Ritacco, A., Roudil, G., Rubino-Martin, J. A., Russell, M., Sakurai, H., Sakurai, Y., Sasaki, M., Scott, D., Sekimoto, Y., Shinozaki, K., Shiraishi, M., Shirron, P., Signorelli, G., Spinella, F., Stever, S., Stompor, R., Sugiyama, S., Sullivan, R. M., Suzuki, A., Svalheim, T. L., Switzer, E., Takaku, R., Takakura, H., Takase, Y., Tartari, A., Terao, Y., Thermeau, J., Thommesen, H., Thompson, K. L., Tomasi, M., Tominaga, M., Tristram, M., Tsuji, M., Tsujimoto, M., Vacher, L., Vielva, P., Vittorio, N., Wang, W., Watanuki, K., Wehus, I. K., Weller, J., Westbrook, B., Wilms, J., Winter, B., Wollack, E. J., Yumoto, J., and Zannoni, M. Probing cosmic inflation with the LiteBIRD cosmic microwave background polarization survey. United States: N. p., 2022. Web. doi:10.1093/ptep/ptac150.
Allys, E., Arnold, K., Aumont, J., Aurlien, R., Azzoni, S., Baccigalupi, C., Banday, A. J., Banerji, R., Barreiro, R. B., Bartolo, N., Bautista, L., Beck, D., Beckman, S., Bersanelli, M., Boulanger, F., Brilenkov, M., Bucher, M., Calabrese, E., Campeti, P., Carones, A., Casas, F. J., Catalano, A., Chan, V., Cheung, K., Chinone, Y., Clark, S. E., Columbro, F., D’Alessandro, G., de Bernardis, P., de Haan, T., de la Hoz, E., De Petris, M., Torre, S. Della, Diego-Palazuelos, P., Dobbs, M., Dotani, T., Duval, J. M., Elleflot, T., Eriksen, H. K., Errard, J., Essinger-Hileman, T., Finelli, F., Flauger, R., Franceschet, C., Fuskeland, U., Galloway, M., Ganga, K., Gerbino, M., Gervasi, M., Génova-Santos, R. T., Ghigna, T., Giardiello, S., Gjerløw, E., Grain, J., Grupp, F., Gruppuso, A., Gudmundsson, J. E., Halverson, N. W., Hargrave, P., Hasebe, T., Hasegawa, M., Hazumi, M., Henrot-Versillé, S., Hensley, B., Hergt, L. T., Herman, D., Hivon, E., Hlozek, R. A., Hornsby, A. L., Hoshino, Y., Hubmayr, J., Ichiki, K., Iida, T., Imada, H., Ishino, H., Jaehnig, G., Katayama, N., Kato, A., Keskitalo, R., Kisner, T., Kobayashi, Y., Kogut, A., Kohri, K., Komatsu, E., Komatsu, K., Konishi, K., Krachmalnicoff, N., Kuo, C. L., Lamagna, L., Lattanzi, M., Lee, A. T., Leloup, C., Levrier, F., Linder, E., Luzzi, G., Macias-Perez, J., Maciaszek, T., Maffei, B., Maino, D., Mandelli, S., Martínez-González, E., Masi, S., Massa, M., Matarrese, S., Matsuda, F. T., Matsumura, T., Mele, L., Migliaccio, M., Minami, Y., Moggi, A., Montgomery, J., Montier, L., Morgante, G., Mot, B., Nagano, Y., Nagasaki, T., Nagata, R., Nakano, R., Namikawa, T., Nati, F., Natoli, P., Nerval, S., Noviello, F., Odagiri, K., Oguri, S., Ohsaki, H., Pagano, L., Paiella, A., Paoletti, D., Passerini, A., Patanchon, G., Piacentini, F., Piat, M., Pisano, G., Polenta, G., Poletti, D., Prouvé, T., Puglisi, G., Rambaud, D., Raum, C., Realini, S., Reinecke, M., Remazeilles, M., Ritacco, A., Roudil, G., Rubino-Martin, J. A., Russell, M., Sakurai, H., Sakurai, Y., Sasaki, M., Scott, D., Sekimoto, Y., Shinozaki, K., Shiraishi, M., Shirron, P., Signorelli, G., Spinella, F., Stever, S., Stompor, R., Sugiyama, S., Sullivan, R. M., Suzuki, A., Svalheim, T. L., Switzer, E., Takaku, R., Takakura, H., Takase, Y., Tartari, A., Terao, Y., Thermeau, J., Thommesen, H., Thompson, K. L., Tomasi, M., Tominaga, M., Tristram, M., Tsuji, M., Tsujimoto, M., Vacher, L., Vielva, P., Vittorio, N., Wang, W., Watanuki, K., Wehus, I. K., Weller, J., Westbrook, B., Wilms, J., Winter, B., Wollack, E. J., Yumoto, J., & Zannoni, M. Probing cosmic inflation with the LiteBIRD cosmic microwave background polarization survey. United States. https://doi.org/10.1093/ptep/ptac150
Allys, E., Arnold, K., Aumont, J., Aurlien, R., Azzoni, S., Baccigalupi, C., Banday, A. J., Banerji, R., Barreiro, R. B., Bartolo, N., Bautista, L., Beck, D., Beckman, S., Bersanelli, M., Boulanger, F., Brilenkov, M., Bucher, M., Calabrese, E., Campeti, P., Carones, A., Casas, F. J., Catalano, A., Chan, V., Cheung, K., Chinone, Y., Clark, S. E., Columbro, F., D’Alessandro, G., de Bernardis, P., de Haan, T., de la Hoz, E., De Petris, M., Torre, S. Della, Diego-Palazuelos, P., Dobbs, M., Dotani, T., Duval, J. M., Elleflot, T., Eriksen, H. K., Errard, J., Essinger-Hileman, T., Finelli, F., Flauger, R., Franceschet, C., Fuskeland, U., Galloway, M., Ganga, K., Gerbino, M., Gervasi, M., Génova-Santos, R. T., Ghigna, T., Giardiello, S., Gjerløw, E., Grain, J., Grupp, F., Gruppuso, A., Gudmundsson, J. E., Halverson, N. W., Hargrave, P., Hasebe, T., Hasegawa, M., Hazumi, M., Henrot-Versillé, S., Hensley, B., Hergt, L. T., Herman, D., Hivon, E., Hlozek, R. A., Hornsby, A. L., Hoshino, Y., Hubmayr, J., Ichiki, K., Iida, T., Imada, H., Ishino, H., Jaehnig, G., Katayama, N., Kato, A., Keskitalo, R., Kisner, T., Kobayashi, Y., Kogut, A., Kohri, K., Komatsu, E., Komatsu, K., Konishi, K., Krachmalnicoff, N., Kuo, C. L., Lamagna, L., Lattanzi, M., Lee, A. T., Leloup, C., Levrier, F., Linder, E., Luzzi, G., Macias-Perez, J., Maciaszek, T., Maffei, B., Maino, D., Mandelli, S., Martínez-González, E., Masi, S., Massa, M., Matarrese, S., Matsuda, F. T., Matsumura, T., Mele, L., Migliaccio, M., Minami, Y., Moggi, A., Montgomery, J., Montier, L., Morgante, G., Mot, B., Nagano, Y., Nagasaki, T., Nagata, R., Nakano, R., Namikawa, T., Nati, F., Natoli, P., Nerval, S., Noviello, F., Odagiri, K., Oguri, S., Ohsaki, H., Pagano, L., Paiella, A., Paoletti, D., Passerini, A., Patanchon, G., Piacentini, F., Piat, M., Pisano, G., Polenta, G., Poletti, D., Prouvé, T., Puglisi, G., Rambaud, D., Raum, C., Realini, S., Reinecke, M., Remazeilles, M., Ritacco, A., Roudil, G., Rubino-Martin, J. A., Russell, M., Sakurai, H., Sakurai, Y., Sasaki, M., Scott, D., Sekimoto, Y., Shinozaki, K., Shiraishi, M., Shirron, P., Signorelli, G., Spinella, F., Stever, S., Stompor, R., Sugiyama, S., Sullivan, R. M., Suzuki, A., Svalheim, T. L., Switzer, E., Takaku, R., Takakura, H., Takase, Y., Tartari, A., Terao, Y., Thermeau, J., Thommesen, H., Thompson, K. L., Tomasi, M., Tominaga, M., Tristram, M., Tsuji, M., Tsujimoto, M., Vacher, L., Vielva, P., Vittorio, N., Wang, W., Watanuki, K., Wehus, I. K., Weller, J., Westbrook, B., Wilms, J., Winter, B., Wollack, E. J., Yumoto, J., and Zannoni, M. Mon . "Probing cosmic inflation with the LiteBIRD cosmic microwave background polarization survey". United States. https://doi.org/10.1093/ptep/ptac150. https://www.osti.gov/servlets/purl/2002887.
@article{osti_2002887,
title = {Probing cosmic inflation with the LiteBIRD cosmic microwave background polarization survey},
author = {Allys, E. and Arnold, K. and Aumont, J. and Aurlien, R. and Azzoni, S. and Baccigalupi, C. and Banday, A. J. and Banerji, R. and Barreiro, R. B. and Bartolo, N. and Bautista, L. and Beck, D. and Beckman, S. and Bersanelli, M. and Boulanger, F. and Brilenkov, M. and Bucher, M. and Calabrese, E. and Campeti, P. and Carones, A. and Casas, F. J. and Catalano, A. and Chan, V. and Cheung, K. and Chinone, Y. and Clark, S. E. and Columbro, F. and D’Alessandro, G. and de Bernardis, P. and de Haan, T. and de la Hoz, E. and De Petris, M. and Torre, S. Della and Diego-Palazuelos, P. and Dobbs, M. and Dotani, T. and Duval, J. M. and Elleflot, T. and Eriksen, H. K. and Errard, J. and Essinger-Hileman, T. and Finelli, F. and Flauger, R. and Franceschet, C. and Fuskeland, U. and Galloway, M. and Ganga, K. and Gerbino, M. and Gervasi, M. and Génova-Santos, R. T. and Ghigna, T. and Giardiello, S. and Gjerløw, E. and Grain, J. and Grupp, F. and Gruppuso, A. and Gudmundsson, J. E. and Halverson, N. W. and Hargrave, P. and Hasebe, T. and Hasegawa, M. and Hazumi, M. and Henrot-Versillé, S. and Hensley, B. and Hergt, L. T. and Herman, D. and Hivon, E. and Hlozek, R. A. and Hornsby, A. L. and Hoshino, Y. and Hubmayr, J. and Ichiki, K. and Iida, T. and Imada, H. and Ishino, H. and Jaehnig, G. and Katayama, N. and Kato, A. and Keskitalo, R. and Kisner, T. and Kobayashi, Y. and Kogut, A. and Kohri, K. and Komatsu, E. and Komatsu, K. and Konishi, K. and Krachmalnicoff, N. and Kuo, C. L. and Lamagna, L. and Lattanzi, M. and Lee, A. T. and Leloup, C. and Levrier, F. and Linder, E. and Luzzi, G. and Macias-Perez, J. and Maciaszek, T. and Maffei, B. and Maino, D. and Mandelli, S. and Martínez-González, E. and Masi, S. and Massa, M. and Matarrese, S. and Matsuda, F. T. and Matsumura, T. and Mele, L. and Migliaccio, M. and Minami, Y. and Moggi, A. and Montgomery, J. and Montier, L. and Morgante, G. and Mot, B. and Nagano, Y. and Nagasaki, T. and Nagata, R. and Nakano, R. and Namikawa, T. and Nati, F. and Natoli, P. and Nerval, S. and Noviello, F. and Odagiri, K. and Oguri, S. and Ohsaki, H. and Pagano, L. and Paiella, A. and Paoletti, D. and Passerini, A. and Patanchon, G. and Piacentini, F. and Piat, M. and Pisano, G. and Polenta, G. and Poletti, D. and Prouvé, T. and Puglisi, G. and Rambaud, D. and Raum, C. and Realini, S. and Reinecke, M. and Remazeilles, M. and Ritacco, A. and Roudil, G. and Rubino-Martin, J. A. and Russell, M. and Sakurai, H. and Sakurai, Y. and Sasaki, M. and Scott, D. and Sekimoto, Y. and Shinozaki, K. and Shiraishi, M. and Shirron, P. and Signorelli, G. and Spinella, F. and Stever, S. and Stompor, R. and Sugiyama, S. and Sullivan, R. M. and Suzuki, A. and Svalheim, T. L. and Switzer, E. and Takaku, R. and Takakura, H. and Takase, Y. and Tartari, A. and Terao, Y. and Thermeau, J. and Thommesen, H. and Thompson, K. L. and Tomasi, M. and Tominaga, M. and Tristram, M. and Tsuji, M. and Tsujimoto, M. and Vacher, L. and Vielva, P. and Vittorio, N. and Wang, W. and Watanuki, K. and Wehus, I. K. and Weller, J. and Westbrook, B. and Wilms, J. and Winter, B. and Wollack, E. J. and Yumoto, J. and Zannoni, M.},
abstractNote = {LiteBIRD, the Lite (Light) satellite for the study of B-mode polarization and Inflation from cosmic background Radiation Detection, is a space mission for primordial cosmology and fundamental physics. The Japan Aerospace Exploration Agency (JAXA) selected LiteBIRD in May 2019 as a strategic large-class (L-class) mission, with an expected launch in the late 2020s using JAXA’s H3 rocket. LiteBIRD is planned to orbit the Sun–Earth Lagrangian point L2, where it will map the cosmic microwave background polarization over the entire sky for three years, with three telescopes in 15 frequency bands between 34 and 448 GHz, to achieve an unprecedented total sensitivity of $2.2\, \mu$K-arcmin, with a typical angular resolution of 0.5° at 100 GHz. The primary scientific objective of LiteBIRD is to search for the signal from cosmic inflation, either making a discovery or ruling out well-motivated inflationary models. The measurements of LiteBIRD will also provide us with insight into the quantum nature of gravity and other new physics beyond the standard models of particle physics and cosmology. We provide an overview of the LiteBIRD project, including scientific objectives, mission and system requirements, operation concept, spacecraft and payload module design, expected scientific outcomes, potential design extensions, and synergies with other projects.},
doi = {10.1093/ptep/ptac150},
journal = {Progress of Theoretical and Experimental Physics},
number = 4,
volume = 2023,
place = {United States},
year = {Mon Nov 21 00:00:00 EST 2022},
month = {Mon Nov 21 00:00:00 EST 2022}
}

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The Thermal and Gravitational Energy Densities in the Large-scale Structure of the Universe
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NINE-YEAR WILKINSON MICROWAVE ANISOTROPY PROBE ( WMAP ) OBSERVATIONS: COSMOLOGICAL PARAMETER RESULTS
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New constraints on primordial gravitational waves from Planck 2015
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Cosmic Birefringence from the Planck Data Release 4
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Testing parity-violating physics from cosmic rotation power reconstruction
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The Simons Observatory: science goals and forecasts
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POL-2: a polarimeter for the James-Clerk-Maxwell telescope
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Revised planet brightness temperatures using the Planck/LFI 2018 data release
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Gravitational waves and large field inflation
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Exploring cosmic origins with CORE: Cosmological parameters
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Evidence for Gamma-Ray Halos Around Active Galactic Nuclei and the First Measurement of Intergalactic Magnetic Fields
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Planck 2018 constraints on anisotropic birefringence and its cross-correlation with CMB anisotropy
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Effect of Template Uncertainties on the WMAP and Planck Measures of the Optical Depth Due to Reionization
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Evidence for line-of-sight frequency decorrelation of polarized dust emission in Planck data
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The physics and early history of the intergalactic medium
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Measuring primordial anisotropic correlators with CMB spectral distortions
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Planck intermediate results : XLIX. Parity-violation constraints from polarization data
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Development of cosmic ray mitigation techniques for the LiteBIRD space mission (Conference Presentation)
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A Measurement of the CMB E -mode Angular Power Spectrum at Subdegree Scales from 670 Square Degrees of POLARBEAR Data
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Thermalization and spectral distortions of the cosmic background radiation
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Detection of spectral variations of Anomalous Microwave Emission with QUIJOTE and C-BASS
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Exploring cosmic origins with CORE: B -mode component separation
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Future CMB Polarization Measurements and Japanese Contributions
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The Simons Observatory: Galactic Science Goals and Forecasts
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Planck pre-launch status: HFI ground calibration
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Gauge-flation: Inflation from non-Abelian gauge fields
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COSMIC REIONIZATION AND EARLY STAR-FORMING GALAXIES: A JOINT ANALYSIS OF NEW CONSTRAINTS FROM PLANCK AND THE HUBBLE SPACE TELESCOPE
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Robustness of inflation to large tensor perturbations
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Can we measure the neutrino mass hierarchy in the sky?
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Polarization of Magnetic Dipole Emission and Spinning dust Emission from Magnetic Nanoparticles
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Measurements of the E -mode polarization and temperature- E -mode correlation of the CMB from SPT-3G 2018 data
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Testing statistics of the CMB B -mode polarization toward unambiguously establishing quantum fluctuation of the vacuum
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Optimal cosmic microwave background map-making in the presence of cross-correlated noise
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Receiver development for BICEP Array, a next-generation CMB polarimeter at the South Pole
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Measurements of B -mode polarization of the cosmic microwave background from 500 square degrees of SPTpol data
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Quantum cosmological perturbations: predictions and observations
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Magnetic fields from inflation?
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Submillimeter Polarization Spectrum in the vela c Molecular Cloud
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A cryogenic continuously rotating half-wave plate mechanism for the POLARBEAR-2b cosmic microwave background receiver
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Complementing the ground-based CMB-S4 experiment on large scales with the PIXIE satellite
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Development of a contact-less cryogenic rotation mechanism employed for a polarization modulator unit in cosmic microwave background polarization experiments
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The Impact of the Spectral Response of an Achromatic Half-Wave Plate on the Measurement of the Cosmic Microwave Background Polarization
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The Power Spectra of Polarized, Dusty Filaments
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Effect of primordial magnetic fields on the ionization history
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H3 Launch Vehicle Development Concept of Operations
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Extended reionization in models beyond ΛCDM with Planck 2018 data
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Constraints on primordial magnetic fields from the optical depth of the cosmic microwave background
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The State-of-Play of Anomalous Microwave Emission (AME) research
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Measurements of the Temperature and E-mode Polarization of the CMB from 500 Square Degrees of SPTpol Data
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Polarization bispectrum for measuring primordial magnetic fields
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Planck 2013 results. XXIV. Constraints on primordial non-Gaussianity
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First‐Year Wilkinson Microwave Anisotropy Probe ( WMAP ) Observations: Determination of Cosmological Parameters
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The Atacama Cosmology Telescope: A Catalog of >4000 Sunyaev–Zel’dovich Galaxy Clusters
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The EBEX Balloon-borne Experiment—Detectors and Readout
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First‐Year Wilkinson Microwave Anisotropy Probe ( WMAP ) Observations: Tests of Gaussianity
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Observing patchy reionization with future CMB polarization experiments
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Inflationary universe: A possible solution to the horizon and flatness problems
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A Probe of Primordial Gravity Waves and Vorticity
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Planck intermediate results : XXIII. Galactic plane emission components derived from
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Hilltop inflation
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Planck intermediate results : LII. Planet flux densities
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MILCA, a modified internal linear combination algorithm to extract astrophysical emissions from multifrequency sky maps
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Finding the chiral gravitational wave background of an axion- S U ( 2 ) inflationary model using CMB observations and laser interferometers
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Frequency multiplexed superconducting quantum interference device readout of large bolometer arrays for cosmic microwave background measurements
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bicep2/ KECK ARRAY . IV. OPTICAL CHARACTERIZATION AND PERFORMANCE OF THE bicep2 AND KECK ARRAY EXPERIMENTS
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Galaxy Clusters Discovered via the Sunyaev-Zel'Dovich Effect in the 2500-Square-Degree Spt-Sz Survey
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Chiral primordial gravitational waves from dilaton induced delayed chromonatural inflation
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Measuring magnetism in the Milky Way with the Square Kilometre Array
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New physics from the polarized light of the cosmic microwave background
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The Standard Model Higgs boson as the inflaton
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A simple method to measure the temperature and levitation height of devices rotating at cryogenic temperatures
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Einstein equivalence principle and the polarization of radio galaxies
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Chaotic inflation in supergravity
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New Extraction of the Cosmic Birefringence from the Planck 2018 Polarization Data
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Gravitational Lensing
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Gravity waves and non-Gaussian features from particle production in a sector gravitationally coupled to the inflaton
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Metal mesh based metamaterials for millimetre wave and THz astronomy applications
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Complete constraints on a nonminimally coupled chaotic inflationary scenario from the cosmic microwave background
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Gauge-invariant cosmological perturbations
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Adiabatic modes in cosmology
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Planck pre-launch status: The optical architecture of the HFI
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The Kinetic Sunyaev-Zel'Dovich Effect as a Probe of the Physics of Cosmic Reionization: the Effect of Self-Regulated Reionization
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Chaotic inflation
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L2-CalSat: A Calibration Satellite for Ultra-Sensitive CMB Polarization Space Missions
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Tensor spectra templates for axion-gauge fields dynamics during inflation
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Simulations of systematic effects arising from cosmic rays in the LiteBIRD space telescope, and effects on the measurements of CMB B-modes
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Cosmological Signature of New Parity-Violating Interactions
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A radio ridge connecting two galaxy clusters in a filament of the cosmic web
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Cosmology for Grand Unified Theories with Radiatively Induced Symmetry Breaking
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Progress Report on the Large-Scale Polarization Explorer
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A MEASUREMENT OF THE COSMIC MICROWAVE BACKGROUND B -MODE POLARIZATION POWER SPECTRUM AT SUB-DEGREE SCALES WITH POLARBEAR
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Small Aperture Telescopes for the Simons Observatory
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Primordial magnetic fields and causality
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Cosmological Constraints on Late-time Entropy Production
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Design and demonstration of the frequency independent fast axis of the Pancharatnam base multi-layer half-wave plate for CMB polarization experiment
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First‐Year Wilkinson Microwave Anisotropy Probe ( WMAP ) Observations: Preliminary Maps and Basic Results
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Deconstructing the neutrino mass constraint from galaxy redshift surveys
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Perturbations in Chromo-Natural Inflation
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Probing primordial magnetism with off-diagonal correlators of CMB polarization
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Can nonadiabatic perturbations arise after single-field inflation?
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The search for a primordial magnetic field
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The Atacama Cosmology Telescope: a measurement of the Cosmic Microwave Background power spectra at 98 and 150 GHz
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Cosmology at low frequencies: The 21cm transition and the high-redshift Universe
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Enhancing inflationary tensor modes through spectator fields
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Introduction to temperature anisotropies of Cosmic Microwave Background radiation
journal, June 2014

  • Sugiyama, N.
  • Progress of Theoretical and Experimental Physics, Vol. 2014, Issue 6
  • DOI: 10.1093/ptep/ptu073

New horizons in cosmology with spectral distortions of the cosmic microwave background
journal, May 2021


The velocity of clusters of galaxies relative to the microwave background. The possibility of its measurement
journal, March 1980

  • Sunyaev, R. A.; Zeldovich, Ya. B.
  • Monthly Notices of the Royal Astronomical Society, Vol. 190, Issue 3
  • DOI: 10.1093/mnras/190.3.413

How neutral is the intergalactic medium surrounding the redshift z = 7.085 quasar ULAS J1120+0641?: How neutral is the IGM around J1120+0641?
journal, July 2011

  • Bolton, J. S.; Haehnelt, M. G.; Warren, S. J.
  • Monthly Notices of the Royal Astronomical Society: Letters, Vol. 416, Issue 1
  • DOI: 10.1111/j.1745-3933.2011.01100.x

Probing the diffuse baryon distribution with the lensing-tSZ cross-correlation
journal, September 2015

  • Ma, Yin-Zhe; Waerbeke, Ludovic Van; Hinshaw, Gary
  • Journal of Cosmology and Astroparticle Physics, Vol. 2015, Issue 09
  • DOI: 10.1088/1475-7516/2015/09/046

QuickPol: Fast calculation of effective beam matrices for CMB polarization
journal, January 2017


Polarized galactic synchrotron and dust emission and their correlation
journal, December 2015


A large-diameter hollow-shaft cryogenic motor based on a superconducting magnetic bearing for millimeter-wave polarimetry
journal, October 2017

  • Johnson, B. R.; Columbro, F.; Araujo, D.
  • Review of Scientific Instruments, Vol. 88, Issue 10
  • DOI: 10.1063/1.4990884

Distortion of the microwave background by a hot intergalactic medium
journal, September 1979

  • Wright, E. L.
  • The Astrophysical Journal, Vol. 232
  • DOI: 10.1086/157294

Gravitational-wave sensitivity curves
journal, December 2014


The Search for Spatial Extension in High-latitude Sources Detected by the Fermi Large Area Telescope
journal, August 2018

  • Ackermann, M.; Ajello, M.; Baldini, L.
  • The Astrophysical Journal Supplement Series, Vol. 237, Issue 2
  • DOI: 10.3847/1538-4365/aacdf7

Deployment of Polarbear-2A
journal, March 2020

  • Kaneko, Daisuke; Adachi, S.; Ade, P. A. R.
  • Journal of Low Temperature Physics, Vol. 199, Issue 3-4
  • DOI: 10.1007/s10909-020-02366-w

FIVE-YEAR WILKINSON MICROWAVE ANISOTROPY PROBE OBSERVATIONS: COSMOLOGICAL INTERPRETATION
journal, February 2009

  • Komatsu, E.; Dunkley, J.; Nolta, M. R.
  • The Astrophysical Journal Supplement Series, Vol. 180, Issue 2
  • DOI: 10.1088/0067-0049/180/2/330

The First Magnetic Fields
journal, October 2011

  • Widrow, Lawrence M.; Ryu, Dongsu; Schleicher, Dominik R. G.
  • Space Science Reviews, Vol. 166, Issue 1-4
  • DOI: 10.1007/s11214-011-9833-5

Axion cosmology
journal, July 2016


Planck intermediate results : XLVII.
journal, December 2016


The Atacama Cosmology Telescope: CMB polarization at 200 < ℓ < 9000
journal, October 2014

  • Naess, Sigurd; Hasselfield, Matthew; McMahon, Jeff
  • Journal of Cosmology and Astroparticle Physics, Vol. 2014, Issue 10
  • DOI: 10.1088/1475-7516/2014/10/007

The Role of Sterile Neutrinos in Cosmology and Astrophysics
journal, November 2009


Results from the Wilkinson Microwave Anisotropy Probe
journal, June 2014

  • Komatsu, E.; Bennett, C. L.; Barnes, C.
  • Progress of Theoretical and Experimental Physics, Vol. 2014, Issue 6
  • DOI: 10.1093/ptep/ptu083

Planck 2015 results : IV. Low Frequency Instrument beams and window functions
journal, September 2016


Delensing cosmic microwave background B modes with the Square Kilometre Array Radio Continuum Survey
journal, February 2016


Delensing the CMB with the cosmic infrared background
journal, August 2015


The C-Band All-Sky Survey (C-BASS): design and capabilities
journal, July 2018

  • Jones, Michael E.; Taylor, Angela C.; Aich, Moumita
  • Monthly Notices of the Royal Astronomical Society, Vol. 480, Issue 3
  • DOI: 10.1093/mnras/sty1956

Development of mechanical cryocoolers for the cooling system of the Soft X-ray Spectrometer onboard Astro-H
journal, April 2012


The Simons Observatory: modeling optical systematics in the Large Aperture Telescope
journal, January 2021

  • Gudmundsson, Jon E.; Gallardo, Patricio A.; Puddu, Roberto
  • Applied Optics, Vol. 60, Issue 4
  • DOI: 10.1364/AO.411533

Simulating Calibration and Beam Systematics for a Future CMB Space Mission with the TOAST Package
journal, June 2021

  • Puglisi, Giuseppe; Keskitalo, Reijo; Kisner, Ted
  • Research Notes of the AAS, Vol. 5, Issue 6
  • DOI: 10.3847/2515-5172/ac0823

Planck 2018 results: II. Low Frequency Instrument data processing
journal, September 2020


GRB 130606A AS A PROBE OF THE INTERGALACTIC MEDIUM AND THE INTERSTELLAR MEDIUM IN A STAR-FORMING GALAXY IN THE FIRST Gyr AFTER THE BIG BANG
journal, August 2013


Finding the Big Bang
book, March 2009

  • Peebles, P. James E.; Page, Jr., Lyman A.; Partridge, R. Bruce
  • Cambridge University Press
  • DOI: 10.1017/CBO9780511626500

The POLARBEAR CMB polarization experiment
conference, July 2010

  • Arnold, K.; Ade, P. A. R.; Anthony, A. E.
  • SPIE Astronomical Telescopes + Instrumentation, SPIE Proceedings
  • DOI: 10.1117/12.858314

Physical effects involved in the measurements of neutrino masses with future cosmological data
journal, February 2017

  • Archidiacono, Maria; Brinckmann, Thejs; Lesgourgues, Julien
  • Journal of Cosmology and Astroparticle Physics, Vol. 2017, Issue 02
  • DOI: 10.1088/1475-7516/2017/02/052

Joining Bits and Pieces of Reionization History
journal, August 2020


The optical design and physical optics analysis of a cross-Dragonian telescope for LiteBIRD
conference, July 2018

  • Dotani, Tadayasu; Hasebe, Takashi; Hazumi, Masashi
  • Space Telescopes and Instrumentation 2018: Optical, Infrared, and Millimeter Wave
  • DOI: 10.1117/12.2312185

A CMB polarization primer
journal, October 1997


Simultaneous determination of the cosmic birefringence and miscalibrated polarization angles II: Including cross-frequency spectra
journal, October 2020

  • Minami, Yuto; Komatsu, Eiichiro
  • Progress of Theoretical and Experimental Physics, Vol. 2020, Issue 10
  • DOI: 10.1093/ptep/ptaa130

Prospects for Delensing the Cosmic Microwave Background for Studying Inflation
journal, July 2015


Primordial magnetic fields in the post-recombination era and early reionization
journal, January 2005


How to Derotate the Cosmic Microwave Background Polarization
journal, March 2009


Reappraising foreground contamination in the COBE -DMR data
journal, November 2003


Inflationary versus reionization features from Planck 2015 data
journal, August 2018


Reconstruction of high-resolution Sunyaev–Zeldovich maps from heterogeneous data sets using needlets
journal, January 2013

  • Remazeilles, Mathieu; Aghanim, Nabila; Douspis, Marian
  • Monthly Notices of the Royal Astronomical Society, Vol. 430, Issue 1
  • DOI: 10.1093/mnras/sts636

Stability analysis of chromo-natural inflation and possible evasion of Lyth’s bound
journal, May 2013


Large Non-Gaussianity in Axion Inflation
journal, May 2011


Evaluation of reconstructed angular error of a continuous rotating HWP for LiteBIRD
conference, December 2020

  • Sugiyama, Shinya; Matsumura, Tomotake; Sakurai, Yuki
  • Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave
  • DOI: 10.1117/12.2576290

In the beginning: the first sources of light and the reionization of the universe
journal, July 2001


On the Density of Neutral Hydrogen in Intergalactic Space.
journal, November 1965

  • Gunn, James E.; Peterson, Bruce A.
  • The Astrophysical Journal, Vol. 142
  • DOI: 10.1086/148444

A cryogenic half-wave plate polarimeter using a superconducting magnetic bearing
conference, September 2011

  • Klein, Jeff; Aboobaker, Asad; Ade, Peter
  • SPIE Optical Engineering + Applications, SPIE Proceedings
  • DOI: 10.1117/12.893669

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


Planck 2015 results : XXVII. The second
journal, September 2016


Planck 2015 results : XXII. A map of the thermal Sunyaev-Zeldovich effect
journal, September 2016


SEVEN-YEAR WILKINSON MICROWAVE ANISOTROPY PROBE ( WMAP ) OBSERVATIONS: PLANETS AND CELESTIAL CALIBRATION SOURCES
journal, January 2011

  • Weiland, J. L.; Odegard, N.; Hill, R. S.
  • The Astrophysical Journal Supplement Series, Vol. 192, Issue 2
  • DOI: 10.1088/0067-0049/192/2/19

SEVEN-YEAR WILKINSON MICROWAVE ANISOTROPY PROBE ( WMAP ) OBSERVATIONS: COSMOLOGICAL INTERPRETATION
journal, January 2011

  • Komatsu, E.; Smith, K. M.; Dunkley, J.
  • The Astrophysical Journal Supplement Series, Vol. 192, Issue 2
  • DOI: 10.1088/0067-0049/192/2/18

SEVEN-YEAR WILKINSON MICROWAVE ANISOTROPY PROBE ( WMAP ) OBSERVATIONS: ARE THERE COSMIC MICROWAVE BACKGROUND ANOMALIES?
journal, January 2011

  • Bennett, C. L.; Hill, R. S.; Hinshaw, G.
  • The Astrophysical Journal Supplement Series, Vol. 192, Issue 2
  • DOI: 10.1088/0067-0049/192/2/17

A Measurement of the Cosmic Microwave Background Damping tail from the 2500-Square-Degree Spt-Sz Survey
journal, November 2013


Beginning inflation in an inhomogeneous universe
journal, September 2016

  • East, William E.; Kleban, Matthew; Linde, Andrei
  • Journal of Cosmology and Astroparticle Physics, Vol. 2016, Issue 09
  • DOI: 10.1088/1475-7516/2016/09/010

The NANOGrav 12.5 yr Data Set: Search for an Isotropic Stochastic Gravitational-wave Background
journal, December 2020

  • Arzoumanian, Zaven; Baker, Paul T.; Blumer, Harsha
  • The Astrophysical Journal Letters, Vol. 905, Issue 2
  • DOI: 10.3847/2041-8213/abd401

Planck 2015 results : XIX. Constraints on primordial magnetic fields
journal, September 2016


Limit on Primordial Small-Scale Magnetic Fields from Cosmic Microwave Background Distortions
journal, July 2000

  • Jedamzik, Karsten; Katalinić, Višnja; Olinto, Angela V.
  • Physical Review Letters, Vol. 85, Issue 4
  • DOI: 10.1103/PhysRevLett.85.700

Large-angle cosmic microwave background suppression and polarization predictions
journal, August 2013

  • Copi, Craig J.; Huterer, Dragan; Schwarz, Dominik J.
  • Monthly Notices of the Royal Astronomical Society, Vol. 434, Issue 4
  • DOI: 10.1093/mnras/stt1287

Sardinia Radio Telescope: General Description, Technical Commissioning and First Light
journal, December 2015

  • Bolli, P.; Orlati, A.; Stringhetti, L.
  • Journal of Astronomical Instrumentation, Vol. 04, Issue 03n04
  • DOI: 10.1142/S2251171715500087

Hadronic axion window and the big-bang nucleosynthesis
journal, October 1993


Gravitational lensing as a contaminant of the gravity wave signal in the CMB
journal, February 2004


A Unified Model of Grain Alignment: Radiative Alignment of Interstellar Grains with Magnetic Inclusions
journal, November 2016


The Crab Nebula as a Calibrator for Wide-beam Cosmic Microwave Background Polarization Surveys
journal, October 2021

  • Masi, Silvia; de Bernardis, Paolo; Columbro, Fabio
  • The Astrophysical Journal, Vol. 921, Issue 1
  • DOI: 10.3847/1538-4357/ac1860

A cryogenic infrared calibration target
journal, April 2014

  • Wollack, E. J.; Kinzer, R. E.; Rinehart, S. A.
  • Review of Scientific Instruments, Vol. 85, Issue 4
  • DOI: 10.1063/1.4871108

Primordial gravitational waves from axion-gauge fields dynamics
journal, January 2017

  • Dimastrogiovanni, Emanuela; Fasiello, Matteo; Fujita, Tomohiro
  • Journal of Cosmology and Astroparticle Physics, Vol. 2017, Issue 01
  • DOI: 10.1088/1475-7516/2017/01/019

The POLARBEAR-2 and Simons Array Focal Plane Fabrication Status
journal, September 2018

  • Westbrook, B.; Ade, P. A. R.; Aguilar, M.
  • Journal of Low Temperature Physics, Vol. 193, Issue 5-6
  • DOI: 10.1007/s10909-018-2059-0

Planck intermediate results: LVII. Joint Planck LFI and HFI data processing
journal, November 2020


Rayleigh Scattering and Microwave Background Fluctuations
journal, September 2001

  • Yu, Qingjuan; Spergel, David N.; Ostriker, Jeremiah P.
  • The Astrophysical Journal, Vol. 558, Issue 1
  • DOI: 10.1086/322482

Constraints on the redshift evolution of astrophysical feedback with Sunyaev-Zel’dovich effect cross-correlations
journal, September 2019


Polarized anisotropic spectral distortions of the CMB: galactic and extragalactic constraints on photon-axion conversion
journal, April 2018

  • Mukherjee, Suvodip; Khatri, Rishi; Wandelt, Benjamin D.
  • Journal of Cosmology and Astroparticle Physics, Vol. 2018, Issue 04
  • DOI: 10.1088/1475-7516/2018/04/045

Planck 2015 results : IX. Diffuse component separation: CMB maps
journal, September 2016


Atacama Cosmology Telescope: Constraints on cosmic birefringence
journal, April 2020


Constraints on Primordial Gravitational Waves Using P l a n c k , WMAP, and New BICEP2/ K e c k Observations through the 2015 Season
journal, November 2018


Particle physics models of inflation and the cosmological density perturbation
journal, June 1999


EBEX: a balloon-borne CMB polarization experiment
conference, July 2010

  • Reichborn-Kjennerud, Britt; Aboobaker, Asad M.; Ade, Peter
  • SPIE Astronomical Telescopes + Instrumentation, SPIE Proceedings
  • DOI: 10.1117/12.857138

On the impact of large angle CMB polarization data on cosmological parameters
journal, February 2017

  • Lattanzi, Massimiliano; Burigana, Carlo; Gerbino, Martina
  • Journal of Cosmology and Astroparticle Physics, Vol. 2017, Issue 02
  • DOI: 10.1088/1475-7516/2017/02/041

NIKA 150 GHz polarization observations of the Crab nebula and its spectral energy distribution
journal, August 2018