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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.
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1997
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1997
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Zaldarriaga, M. and Seljak, U., “An all sky analysis of polarization in the microwave background,” Phys. Rev. D
1997
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Kamionkowski, M., Kosowsky, A., and Stebbins, A., “Statistics of cosmic microwave background polarization,” Phys. Rev. D
1997
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Hazumi, M., “Jumping into CMB polarization measurements: A new group at KEK,” AIP Conf. Proc
2008
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Dobbs, M., Bissonnette, E., and Spieler, H., “Digital Frequency Domain Multiplexer for Millimeter-Wavelength Telescopes,” IEEE Transactions on Nuclear Science
2008
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Hazumi, M., “Future CMB polarization measurements and Japanese contributions,” Prog. Theor. Phys. Suppl
2011
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Hazumi, M. et al., “LiteBIRD: a small satellite for the study of B-mode polarization and inflation from cosmic background radiation detection,” Proc. SPIE Int. Soc. Opt. Eng
2012
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Hinshaw, G. et al., “Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results,” Astrophys. J. Suppl
2013
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Bennett, C. et al., “Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Final Maps and Results,” Astrophys. J. Suppl
2013
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Matsumura, T. et al., “Mission design of LiteBIRD,” J. Low Temp. Phys
2014
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Matsumura, T. et al., “LiteBIRD: mission overview and design tradeoffs,” Proc. SPIE Int. Soc. Opt. Eng
2014
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Kamionkowski, M. and Kovetz, E. D., “The Quest for B Modes from Inflationary Gravitational Waves,” Ann. Rev. Astron. Astrophys
2016
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Ade, P. et al., “A Measurement of the Cosmic Microwave Background B B -Mode Polarization Power Spectrum at Sub-Degree Scales from 2 years of POLARBEAR Data,” Astrophys. J
2017
Cited alongside, same era.
Linde, A., “Gravitational waves and large field inflation,” J. Cosm. Astropart. Phys
2017
Cited alongside, same era.
Henning, J. et al., “Measurements of the Temperature and E-Mode Polarization of the CMB from 500 Square Degrees of SPTpol Data,” Astrophys. J
2018
Cited alongside, same era.
Ade, P. et al., “BICEP2 / Keck Array x: Constraints on Primordial Gravitational Waves using Planck, WMAP, and New BICEP2/Keck Observations through the 2015 Season,” Phys. Rev. Lett
2018
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Errard, J. and Stompor, R., “Characterizing bias on large scale CMB B-modes after galactic foregrounds cleaning,” Phys. Rev. D
2019
Tominaga, M., Tsujimoto, M., Stever, S., Ghigna, T., Ishino, H., and Ebisawa, K., “Cosmic ray glitch predictions , physical modeling , and overall effect on the LiteBIRD space mission ( 2 ),” in [ Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave
2020
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Aghanim, N. et al., “Planck 2018 results. V. CMB power spectra and likelihoods,” Astron. Astrophys
2020
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Sayre, J. et al., “Measurements of B-mode Polarization of the Cosmic Microwave Background from 500 Square Degrees of SPTpol Data,” Phys. Rev. D
2020
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2020
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Cited alongside, same era.
Ade, P. et al., “The Simons Observatory: Science goals and forecasts,” JCAP
2019
Cited alongside, same era.
Sekimoto, Y. and the LiteBIRD Joint Study Group, “Wide field-of-view design of low frequency telescope on CMB B-mode polarization satellite LiteBIRD,” Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave (2020 in preparation)
2020
Cited alongside, same era.
Montier, L. and the LiteBIRD Joint Study Group, “Overview of the Medium- and High-Frequency Telescopes of the LiteBIRD satellite mission,” Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave (2020 in preparation)
2020
Cited alongside, same era.
Westbrook, B., Raum, C., and Suzuki, A., “Detector fabrication development for the LiteBIRD satellite mission,” in [ Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave
2020
Cited alongside, same era.
Sakurai, Y. et al., “Breadboard model of polarization modulator unit based on a continuous rotating half-wave plate for low frequency telescope of LiteBIRD space mission,” in [ Space Telescopes and Instrumentation 2020
2020
Cited alongside, same era.
Takakura, H., Sekimoto, Y., Inatani, J., Kashima, S., and Sugimoto, M., “Polarization angle measurement of litebird low frequency telescope scaled model,” in [ Space Telescopes and Instrumentation 2020
2020
Cited alongside, same era.
Tsuji, M., Tsujimoto, M., Sekimoto, Y., Dotani, T., and Shiraishi, M., “Simulating electromagnetic transfer function from the transmission antennae to the sensors vicinity in LiteBIRD,” Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave (2020 in preparation)
2020
Cited alongside, same era.
2020
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Adachi, S. et al., “A measurement of the CMB E-mode angular power spectrum at subdegree scales from 670 square degrees of POLARBEAR data,” Astrophys. J
2020
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2020
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Diego-Palazuelos, P., Vielva, P., Martínez-González, E., and Barreiro, R. B., “Comparison of delensing methodologies and assessment of the delensing capabilities of future experiments,” J. Cosm. Astropart. Phys
2020
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Montgomery, J., Digital Frequency Domain Multiplexing readout: design and performance of the SPT-3G instrument and LiteBIRD satellite readout
2020
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Andersen, K. et al., “BeyondPlanck I. Global Bayesian analysis of the Planck Low Frequency Instrument data,” in [ BeyondPlanck Release Conference
2020
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Stever, S. L., Ghigna, T., Tominaga, M., Tsujimoto, M., Minami, Y., Sugiyama, S., Kato, A., Matsumura, T., Ishino, H., and Hazumi, M., “Simulations of systematic effects arising from cosmic rays in the LiteBIRD space telescope, and effects on the measurements of CMB B B modes,” J. Cosmol. Astrophys. (2020 in preparation)
2020
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Lamagna, L., J.E., G., Imada, H., Hargrave, P., Franceschet, C., De Petris, M., Austermann, J., Bounissou, S., Columbro, F., de Bernardis, P., Henrot-Versillé, S., Hubmayr, J., Jaehnig, G., Keskitalo, R., Maffei, B., Masi, S., Matsumura, T., Montier, L., Mot, B., Noviello, F., O’Sullivan, C., Paiella, A., Pisano, G., Realini, S., Ritacco, A., Savini, G., Suzuki, A., Trappe, N., and Winter, B., “The optical design of the LiteBIRD Middle and High Frequency Telescope,” in [ Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Waves
2021
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