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[1] O’Sullivan, C., “QUBIC ─ The Q & U Bolometric Interferometer for Cosmology”, in 2023 17th European Conference on Antennas and Propagation (EuCAP), 2023, Art. no. 803. doi:10.23919/EuCAP57121.2023.10133731.
20.Foreground control and characterization in Cosmic Microwave Background experiments.
Manzan, E.. (2024) Universita degli Studi di Milano, Dipartimento di Fisica, Milano, Italy `
19. Probing the early Universe with QUBIC: exploiting Spectral-Imaging to mitigate astrophysical foregrounds contamination.
Regnier, M. (2024) Université Paris Cité
18. Optical Modelling and Instrument Calibration for QUBIC, the Q & U Bolometric Interferometer for Cosmology.
Murphy, J. (2022) National University of Ireland Maynooth
17. Polarización del Fondo Cósmico de Radiación: Buscando los modos B utilizando el experimento QUBIC de interferometría bolométrica
Gamboa, M. (2022) Universidad Nacional de La Plata
16. Exploring the primordial Universe, inflation and primordial waves with QUBIC, the Q&U Bolometric Interferometer for Cosmology.
Mousset, L. (2021) Université Paris-Cité
15. Design and Analysis of the Optical Beam Combiner and Corrugated Feed Horns for the QUBIC Instrument.
Burke, D. (2021) Maynooth University
14. Sub-Kelvin Cryogenics for Experimental Cosmology.
May, A. J. (2019) The University of Manchester
13. Characterization of the Optical Combiner of the QUBIC experiment and impact on the spectro-imaging capabilities
De Leo, M. (2017) Sapienza University in Rome
12. Matrices de bolomètres supraconducteurs pour la mesure de la polarisation du fond diffus cosmologique: application à l’expérience QUBIC
Perbost, C. (2016) Université Paris-Diderot
11. Development of the B-mode measurements pipeline for QUBIC experiment
Stolpovskiy, M. (2016) Université Paris-Diderot
10. Polarization issues related to CMB observations at mm-wavelengths
Buzi, D. (2015) Sapienza University in Rome
9. Quasi-Optical Design and Analysis of Bolometric Interferometers for Cosmic Microwave Background Radiation Experiments
Scully, S. (2015) Maynooth University
8. Développements de composants millimétriques pour la caractérisation de la polarisation du fond diffus cosmologique
Bordier, G. (2014) Université Paris-Diderot
7. Mesure des anisotropies de polarisation du fond diffus cosmologique avec l’interféromètre bolométrique QUBIC
Bigot-Sazy, M.-A. (2013) Université Paris-Diderot
6. Design and analysis of a quasi-optical beam combiner for the QUBIC CMB interferometer
Bennett, D. (2014) Maynooth University
5. Développement d’une chaine de détection bolométrique supraconductrice pour la mesure de la polarisation du Fond Diffus Cosmologique
Martino, J. (2012) Université Paris-Diderot
4. The millimeter-wave bolometric interferometer
Gault, et al. (2013), Ph.D. Thesis
3. Composants millimétriques supra-conducteurs pour la mesure de la polarisation du fond diffus cosmologique – Application à l’interférométrie bolométrique
Ghribi, A. (2012)
2. Mesure des anisotropies de polarisation du fond diffus cosmologique avec l’interféromètre bolométrique QUBIC
Charlassier, R. (2010) Université Paris-Diderot
1. Quasi-Optical Design and Analysis of Bolometric Interferometers for Cosmic Microwave Background Experiments
Curran, G. (2010) Maynooth University
06/01/23 – El telescopio QUBIC: El telescopio que está cerca del cielo.
23/11/22 – Inuguration of QUBIC Observatory in Alto Chorrillos
10/26/21 – Inauguration of the Integration Laboratory, Salta.
10/26/21 – “A microwave Telescope in the Puna Salteña”.
08/12/21 – At the Integration Laboratory, Salta.
07/19/21 – A window to the universe in the Puna of Salta,
(credits: CNEA Argentina, CONICET Dialoga, Ministerio de Ciencia, Tecnología e Innovación de la Nación and Gobierno de Salta
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