CERN Accelerating science

CERN Document Server 6 записей найдено  Поиск длился 0.53 секунд. 
1.
Strong Interaction Physics at the Luminosity Frontier with 22 GeV Electrons at Jefferson Lab / Accardi, A. (Hampton U.) ; Achenbach, P. (Jefferson Lab) ; Adhikari, D. (Virginia Tech.) ; Afanasev, A. (George Washington U.) ; Akondi, C.S. (Florida State U.) ; Akopov, N. (Yerevan Phys. Inst.) ; Albaladejo, M. (Valencia U., IFIC) ; Albataineh, H. (Texas A-M ; HARC, Woodlands) ; Albrecht, M. (Jefferson Lab) ; Almeida-Zamora, B. (Sonora U.) et al.
This document presents the initial scientific case for upgrading the Continuous Electron Beam Accelerator Facility (CEBAF) at Jefferson Lab (JLab) to 22 GeV. It is the result of a community effort, incorporating insights from a series of workshops conducted between March 2022 and April 2023. [...]
arXiv:2306.09360; JLAB-PHY-23-3840; JLAB-THY-23-3848.- 2024-09-04 - 139 p. - Published in : Eur. Phys. J. A 60 (2024) 173 Fulltext: PDF; External link: JLab Document Server
2.
Trends in particle and nuclei identification techniques in nuclear physics experiments / Badalà, A (INFN, Catania) ; La Cognata, M (INFN, LNS) ; Nania, R (INFN, Bologna) ; Osipenko, M (INFN, Genoa) ; Piantelli, S (INFN, Florence) ; Turrisi, R (INFN, Padua) ; Barion, L (INFN, Ferrara) ; Capra, S (Milan U. ; INFN, Milan) ; Carbone, D (INFN, Catania) ; Carnesecchi, F (INFN, Bologna ; CERN) et al.
Particle identification techniques are fundamental tools in nuclear physics experiments. Discriminating particles or nuclei produced in nuclear interactions allows to better understand the underlying physics mechanisms. [...]
2022 - 88 p. - Published in : Nuovo Cimento, Riv.: 45 (2022) , no. 3, pp. 189-277
- Published in : Nuovo Cimento, Riv.: 45 (2022) , no. 3, pp. 277-279 Fulltext: PDF;
3.
Electron-beam energy reconstruction for neutrino oscillation measurements / CLAS Collaboration
Neutrinos exist in one of three types or ‘flavours’—electron, muon and tau neutrinos—and oscillate from one flavour to another when propagating through space. This phenomena is one of the few that cannot be described using the standard model of particle physics (reviewed in ref. 1), and so its experimental study can provide new insight into the nature of our Universe (reviewed in ref. 2). [...]
2021 - 20 p. - Published in : Nature 599 (2021) 565-570
4.
Photoproduction of the $f_2(1270)$ meson using the CLAS detector / CLAS Collaboration
The quark structure of the $f_2(1270)$ meson has, for many years, been assumed to be a pure quark-antiquark ($q\bar{q}$) resonance with quantum numbers $J^{PC} = 2^{++}$. Recently, it was proposed that the $f_2(1270)$ is a molecular state made from the attractive interaction of two $\rho$-mesons. [...]
arXiv:2010.16006; JLAB-PHY-20-3279.- 2021-02-25 - 6 p. - Published in : Phys. Rev. Lett. 126 (2021) 082002 Fulltext: PDF; External link: JLAB
5.
Complete measurement of three-body photodisintegration of $^{3}He$ for photon energies between 0.35 and 1.55 GeV / CLAS Collaboration
DAPNIA-2004-268.
- 2004. - 22 p.
Fulltext
6.
Launching Fast Waves in Large Devices / Pugutse, O ; Bazdenkov, S ; Gribkov, V L ; Kerner, W ; Osipenko, M
JET-P-93-106.
- 1993.
Record from JET

Смотрите также: похожие имена автора
1 Osipenko, M V
2 Osipenko, M.
2 Osipenko, Mikhail
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