CERN Accelerating science

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1.

KTTGROUP-PHO-TECH-2024-003
© 2024 CERN
CERN Venture Connect technology
The CERN Venture Connect (CVC) programme is design [...]
19-10-2024
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2.
First joint oscillation analysis of Super-Kamiokande atmospheric and T2K accelerator neutrino data / T2K Collaboration
The Super-Kamiokande and T2K collaborations present a joint measurement of neutrino oscillation parameters from their atmospheric and beam neutrino data. [...]
arXiv:2405.12488.
- 12.
Fulltext
3.

KTTGROUP-PHO-TECH-2023-002
© 2023 CERN
Ultralight Cold Plate technology under CERN Venture Connect
UltraLight Cold Plate is a technology available fo [...]
24-01-2023
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4.
Updated T2K measurements of muon neutrino and antineutrino disappearance using <math display="inline"><mrow><mn>3.6</mn><mo>×</mo><mrow><msup><mrow><mn>10</mn></mrow><mrow><mn>21</mn></mrow></msup></mrow></mrow></math> protons on target / T2K Collaboration
Muon neutrino and antineutrino disappearance probabilities are identical in the standard three-flavor neutrino oscillation framework, but CPT violation and non-standard interactions can violate this symmetry. In this work we report the measurements of $\sin^{2} \theta_{23}$ and $\Delta m_{32}^2$ independently for neutrinos and antineutrinos. [...]
arXiv:2305.09916.- 2023-10-01 - 10 p. - Published in : Phys. Rev. D 108 (2023) 072011 Fulltext: 2305.09916 - PDF; Publication - PDF;
5.
First measurement of muon neutrino charged-current interactions on hydrocarbon without pions in the final state using multiple detectors with correlated energy spectra at T2K / T2K Collaboration
This paper reports the first measurement of muon neutrino charged-current interactions without pions in the final state using multiple detectors with correlated energy spectra at T2K. The data was collected on hydrocarbon targets using the off-axis T2K near detector (ND280) and the on-axis T2K near detector (INGRID) with neutrino energy spectra peaked at 0.6 GeV and 1.1 GeV respectively. [...]
arXiv:2303.14228.- 2023-12-01 - 36 p. - Published in : Phys. Rev. D 108 (2023) 112009 Fulltext: PDF;
6.

KTTGROUP-PHO-MISC-2022-002
© 2022 CERN
CIPEA Innovation Day
The CERN Innovation Programme on Environmental App [...]
29-06-2022
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7.

KTTGROUP-PHO-TECH-2022-002
© 2022 CERN
The Geneva Health Forum
The Geneva Health Forum was held from 3 to 5 May, [...]
03-05-2022
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8.
High-Energy and Ultra-High-Energy Neutrinos: A Snowmass White Paper / Ackermann, Markus (DESY, Zeuthen) ; Bustamante, Mauricio (Bohr Inst.) ; Lu, Lu (Wisconsin U., Madison) ; Otte, Nepomuk (Georgia Tech., Atlanta) ; Reno, Mary Hall (Iowa U.) ; Wissel, Stephanie (Penn State U., University Park, IGC) ; Agarwalla, Sanjib K. (Bhubaneswar, Inst. Phys. ; HBNI, Mumbai ; ICTP, Trieste) ; Alvarez-Muñiz, Jaime (Santiago de Compostela U., IGFAE) ; Alves Batista, Rafael (U. Autonoma, Madrid (main)) ; Argüelles, Carlos A. (Harvard U.) et al.
Astrophysical neutrinos are excellent probes of astroparticle physics and high-energy physics. With energies far beyond solar, supernovae, atmospheric, and accelerator neutrinos, high-energy and ultra-high-energy neutrinos probe fundamental physics from the TeV scale to the EeV scale and beyond. [...]
arXiv:2203.08096.- 2022-11 - 56 p. - Published in : JHEAp: 36 (2022) , pp. 55-110 Fulltext: PDF; External link: eConf
In : 2021 Snowmass Summer Study, Seattle, WA, United States, 11 - 20 July 2021, pp.55-110
9.
How CERN's Knowledge Transfer Communication team uses CERNbox / Lapka, Marzena (speaker) (CERN) ; Dasgupta, Priyanka (speaker) (CERN)
The Knowledge Transfer Communication team uses CERNbox as the go-to place for storing all material to share within the team and the group. These include folders on all campaigns, comms plans, draft versions, lists, raw material and more. [...]
2021 - 822. CERNBox; CERNBox User Forum External links: Talk details; Event details In : CERNBox User Forum
10.

Access to files
Reference: CERN-Brochure-2021-002-Eng From CERN to Aerospace
Email: [email protected]
Created: 2021. -23 p
Creator: Lapka, Marzena

Language: English
Aerospace and particle physics share many technical similarities in terms of operational environments. Both sectors need components capable of functioning in harsh radiation environments, extreme temperatures and high vacuum conditions. Moreover, they both need to be able to handle large amounts of data quickly and autonomously. Performed in orbit around the Earth to avoid atmospheric effects, fundamental physics missions in space have much in common with CERN’s underground experiments. Maximising the positive impact of its research on society is integral to CERN’s mission. Aerospace applications carry strong opportunities in areas such as human and robotic exploration, long-distance transportation, climate change and environment monitoring, disaster prevention, advanced telecommunication and geolocalisation.

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2 Dasgupta, Pallab
1 Dasgupta, Paramita
1 Dasgupta, Pingal
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7 Dasgupta, Priyanka
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