Accès ouvert déclaré
2022
preprint
Probing Cosmic Inflation with the LiteBIRD Cosmic Microwave Background Polarization Survey
LiteBIRD Collaboration, Erwan Allys, Kam Arnold, J. Aumont, R. Aurlien, S. Azzoni, C. Baccigalupi, A. J. Banday, R. Banerji, R. Belén Barreiro, N. Bartolo, Inmaculada Bautista, D. Beck, S. Beckman, M. Bersanelli, F. Boulanger, M. Brilenkov, M. Bucher, Erminia Chiara Calabrese, P. Campeti, A. Carones, F. J. Casas, A. Catalano, V. Chan, K. Cheung, Y. Chinone, Susan E. Clark, F. Columbro, G. D’Alessandro, P. de Bernardis, T. de Haan, E. de la Hoz, M. De Petris, S. Della Torre, P. Diego-Palazuelos, Tadayasu Dotani, J. M. Duval, T. Elleflot, H. K. Eriksen, Josquin Errard, Thomas Essinger-Hileman, Fabio Finelli, Raphael Flauger, C. Franceschet, U. Fuskeland, M. Galloway, Ken M. Ganga, M. Gerbino, M. Gervasi, R. T. Génova-Santos, T. Ghigna, S. Giardiello, E. Gjerløw, J. Grain, Frank U. Grupp, ALESSANDRO GRUPPUSO, J. E. Gudmundsson, N. W. Halverson, Peter Hargrave, Takashi Hasebe, M. Hasegawa, M. Hazumi, Sophie Henrot-Versillé, Brandon S. Hensley, L. T. Hergt, D. Leigh Herman, E. Hivon, Renée Hložek, Amber L. Hornsby, Yurika Hoshino, Johannes Hubmayr, Kiyotomo Ichiki, Teruhito Iida, Hiroaki Imada, H. Ishino, Greg C. Jaehnig, Nobuhiko Katayama, A. Kato, T. S. Kisner, Y. Kobayashi, A. Kogut, Kazunori Kohri, Eiichiro Komatsu, Kunimoto Komatsu, K. Konishi, N. Krachmalnicoff, C. L. Kuo, L. Lamagna, Massimiliano Lattanzi, A. T. Lee, C. Leloup, F. Levrier, E. Linder, G. Luzzi, Juan Francisco Macias-Perez, Bruno Maffei, Davide Maino, S. Mandelli, Enrique Martínez-González, S. Masi, Maurizio Massa, S. Matarrese, F. Matsuda, T. Matsumura, L. Mele, M. Migliaccio, Y. Minami, A. Moggi, J. Montgomery, L. Montier, Gianluca Morgante, Baptiste Mot, Y. Nagano, Takeo Nagasaki, Ryo Nagata, Ryo Nakano, Toshiya Namikawa, F. Nati, P. Natoli, S. Nerval, F. Noviello, Kimihide Odagiri, S. Oguri, Hiroyuki Ohsaki, L. Pagano, A. Paiella, D. Paoletti, Andrea Passerini, G. Patanchon, F. Piacentini, M. Piat, Gianluca Polenta, Davide Poletti, T. Prouvé, Giuseppe Puglisi, D. Rambaud, C. Raum, S. Realini, M. Reinecke, Mathieu Remazeilles, A. Ritacco, G. Roudil, José Alberto Rubiño-Martín, Michael J. Russell, H. Sakurai, Y. Sakurai, M. Sasaki, Douglas Scott, Yutaro Sekímoto, K. Shinozaki, Maresuke Shiraishi, Peter John Shirron, G. Signorelli, F. Spinella, Samantha L. Stever, Radek Stompor, Shinya Sugiyama, Raelyn Marguerite Sullivan, A. T. Suzuki, T. L. Svalheim, Eric R. Switzer, R. Takaku, Hayato Takakura, Yusuke Takase, A. Tartari, K. Terao, J.-P. Thermeau, Harald Thommesen, Kristen L. Thompson, Maurizio Tomasi, M. Tominaga, M. Tristram, M. Tsuji, Masahiro Tsujimoto, L. Vacher, Patricio Vielva, Nicola Vittorio, W. Wang, Kazuya Watanuki, Ingunn Kathrine Wehus, J. Weller, B. Westbrook, J. Wilms, Edward J. Wollack, J. Yumoto, M. Zannoni
36Citations signalées, ce qui n’est pas une note de qualité
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Le résumé fourni par la source
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 (CMB) 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$^\circ$ 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.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Probing cosmic inflation with the
<i>LiteBIRD</i>
cosmic microwave background polarization survey
- Date Crossref
- 21/11/2022
- Éditeur
- Oxford University Press (OUP)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les sujets associés
Dark Matter and Cosmic PhenomenaSpacecraft Design and TechnologyCosmology and Gravitation Theories