CERN Accelerating science

CERN Document Server 37 のレコードが見つかりました。  1 - 10次最後  レコードへジャンプ: 検索にかかった時間: 1.41 秒 
1.
CEPC Technical Design Report: Accelerator / CEPC Study Group Collaboration
The Circular Electron Positron Collider (CEPC) is a large scientific project initiated and hosted by China, fostered through extensive collaboration with international partners. The complex comprises four accelerators: a 30 GeV Linac, a 1.1 GeV Damping Ring, a Booster capable of achieving energies up to 180 GeV, and a Collider operating at varying energy modes (Z, W, H, and ttbar). [...]
arXiv:2312.14363; IHEP-CEPC-DR-2023-01; IHEP-AC-2023-01.- 2024-06-03 - 1106 p. - Published in : Radiat. Detect. Technol. Methods 8 (2024) 1-1105 Fulltext: 2312.14363 - PDF; Publication - PDF;
2.
Track-based alignment for the BESIII CGEM detector in the cosmic-ray test / Guo, A.Q. (Lanzhou, Inst. Modern Phys. ; Beijing, GUCAS) ; Wu, L.H. (Beijing, Inst. High Energy Phys. ; Beijing, GUCAS) ; Wang, L.L. (Beijing, Inst. High Energy Phys. ; Beijing, GUCAS) ; Mitchell, R.E. (Indiana U.) ; Amoroso, A. (INFN, Turin ; Turin U.) ; Ferroli, R. Baldini (Frascati) ; Balossino, I. (INFN, Ferrara ; Beijing, GUCAS) ; Bertani, M. (Frascati) ; Bettoni, D. (INFN, Ferrara) ; Bortone, A. (INFN, Turin ; Turin U.) et al.
The Beijing Electron Spectrometer III (BESIII) is a multipurpose detector operating on the Beijing Electron Positron Collider II (BEPCII). [...]

Fulltext
3.
Measurement of $^{12}$C Fragmentation Cross Sections on C, O, and H in the Energy Range of Interest for Particle Therapy Applications / Mattei, I ; Alexandrov, A ; Alunni Solestizi, L ; Ambrosi, G ; Argiro, S ; Bartosik, N ; Battistoni, G ; Belcari, N ; Biondi, S ; Bisogni, M G et al.
In a carbon ion treatment the nuclear fragmentation of both target and beam projectiles impacts on the dose released on the tumor and on the surrounding healthy tissues. Carbon ion fragmentation occurring inside the patient body has to be studied in order to take into account this contribution. [...]
2020 - 14 p. - Published in : IEEE Trans. Rad. Plasma Med. Sci. 4 (2020) 269-282
4.
Ion charge separation with new generation of nuclear emulsion films / Montesi, M.C. (Naples U. ; INFN, Naples) ; Lauria, A. (Naples U. ; INFN, Naples) ; Alexandrov, A. (INFN, Naples ; Naples U. ; Natl. U. Sci. Tech., Moscow ; Lebedev Inst.) ; Solestizi, L. Alunni (INFN, Perugia ; Perugia U.) ; Giovanni, Ambrosi (INFN, Perugia) ; Argirò, S. (Turin U. ; INFN, Turin) ; Diaz, R. (Havana, CEADEN) ; Bartosik, N. (INFN, Turin) ; Battistoni, G. (INFN, Milan) ; Belcari, N. (Pisa U. ; INFN, Pisa) et al.
In hadron therapy, the accelerated ions, interacting with the body of the patient, cause the fragmentation of both projectile and target nuclei. The fragments interact with the human tissues depositing energy both in the entrance channel and in the volume surrounding the tumor. [...]
2019 - 8 p. - Published in : Open Physics 17 (2019) 233-240 Fulltext: PDF;
5.
Development of HTS Current Leads for the ITER Project / Bauer, P. (BIAM, St Paul lez Durance) ; Ballarino, A (CERN) ; Devred, A (CERN) ; Ding, K (Hefei, Inst. Plasma Phys.) ; Dong, Y (Hefei, Inst. Plasma Phys.) ; Niu, E (Unlisted, CN) ; Du, Q (Hefei, Inst. Plasma Phys.) ; Gung, C Y (BIAM, St Paul lez Durance) ; Han, Q (Hefei, Inst. Plasma Phys.) ; Heller, R (KIT, Karlsruhe) et al.
The HTS current leads for the ITER project will be the largest ever operated, with unprecedented currents, up to 68 kA and voltages, up to 14 kV. According to the ITER agreement they will be provided in-kind by China. [...]
2020 - 8 p. - Published in : IOP Conf. Ser. Mater. Sci. Eng. 756 (2020) 012032 fulltext from publisher: PDF;
In : Conference on Cryogenic Engineering and on International Cryogenic Materials, Hartford, Connecticut, 21 - 25 Jul 2019, pp.012032
6.
The FOOT FragmentatiOn Of Target Experiment / Alexandrov, Andrey (INFN, Naples) ; Alpat, Behcet (INFN, Perugia) ; Ambrosi, Giovanni (INFN, Perugia) ; Argirò, Stefano (Turin U. ; INFN, Turin) ; Battistoni, Giuseppe (INFN, Milan) ; Bisogni, Maria Giuseppina (Pisa U. ; INFN, Pisa) ; Belcari, Nicola (Pisa U. ; INFN, Pisa) ; Biondi, Silvia (INFN, Bologna ; Bologna U.) ; Bruni, Graziano (INFN, Bologna) ; Camarlinghi, Niccolò (Pisa U. ; INFN, Pisa) et al.
In proton-therapy clinical practice a constant RBE equal to 1.1 is adopted, regardless of the demonstrated RBE variations, which depends on physical and biological parameters. Among other mechanisms, nuclear interactions might influence the proton-RBE due to secondary heavier particles produced by target fragmentation that can significantly contribute to the total dose: an un-wanted and undetermined increase of normal tissues complications probability may occur. [...]
Geneva : CERN, 2019 - 8 p. - Published in : CERN Proc.: 1 (2019) , pp. 305-312 Fulltext: PDF;
In : 15th International Conference on Nuclear Reaction Mechanisms, Varenna, Italy, 11 - 15 Jun 2018, pp.305-312
7.
The DAMPE silicon tungsten tracker / Gallo, Valentina (CERN ; Geneva U.) ; Ambrosi, G (INFN, Perugia) ; Asfandiyarov, R (Geneva U.) ; Azzarello, P (Geneva U.) ; Bernardini, P (Salento U. ; INFN, Lecce) ; Bertucci, B (INFN, Perugia ; Perugia U.) ; Bolognini, A (INFN, Perugia ; Perugia U.) ; Cadoux, F (Geneva U.) ; Caprai, M (INFN, Perugia) ; Domenjoz, M (Geneva U.) et al.
The DArk Matter Particle Explorer (DAMPE) satellite has been successfully launched on the 17th December 2015. It is a powerful space detector designed for the identification of possible Dark Matter signatures thanks to its capability to detect electrons and photons with an unprecedented energy resolution in an energy range going from few GeV up to 10 TeV. [...]
SISSA, 2017 - 9 p. - Published in : PoS Vertex2016 (2017) 010 Fulltext: PDF; External link: PoS server
In : VERTEX 2016, La Biodola, Italy, 25 - 30 Sep 2016, pp.010
8.
The DArk Matter Particle Explorer mission / DAMPE Collaboration
The DArk Matter Particle Explorer (DAMPE), one of the four scientific space science missions within the framework of the Strategic Pioneer Program on Space Science of the Chinese Academy of Sciences, is a general purpose high energy cosmic-ray and gamma-ray observatory, which was successfully launched on December 17th, 2015 from the Jiuquan Satellite Launch Center. The DAMPE scientific objectives include the study of galactic cosmic rays up to $\sim 10$ TeV and hundreds of TeV for electrons/gammas and nuclei respectively, and the search for dark matter signatures in their spectra. [...]
arXiv:1706.08453.- 2017-10 - 19 p. - Published in : Astropart. Phys. 95 (2017) 6-24 Preprint: PDF;
9.
Experimental verification of the HERD prototype at CERN SPS / Dong, Yongwei (Key Laboratory of Particle Astrophysics) ; Quan, Zheng (Beijing, Inst. High Energy Phys.) ; Wang, Junjing (Beijing, Inst. High Energy Phys.) ; Xu, Ming (Key Laboratory of Particle Astrophysics) ; Albergo, Sebastiano (INFN, Italy) ; Ambroglini, Filippo (INFN, Italy) ; Ambrosi, Giovanni (INFN, Italy) ; Azzarello, Philipp (Geneva U.) ; Bai, Yonglin (Xian Inst. Optics, Precision Mech.) ; Bao, Tianwei (Key Laboratory of Particle Astrophysics) et al.
The High Energy cosmic-Radiation Detection (HERD) facility is one of several space astronomy payloads of the cosmic light house program onboard China's Space Station, which is planned for operation starting around 2020 for about 10 years. Beam test with a HERD prototype, to verify the HERD specifications and the reading out method of wavelength shifting fiber and image intensified CCD, was taken at CERN SPS in November, 2015. [...]
2016 - 8 p. - Published in : Proc. SPIE 9905 (2016) 99056D
10.
ILC Reference Design Report Volume 3 - Accelerator / Phinney, Nan (ed.) (SLAC) ; Toge, Nobukazu (ed.) (KEK, Tsukuba) ; Walker, Nicholas J. (ed.) (DESY) ; Aarons, Gerald (SLAC) ; Abe, Toshinori (Tokyo U.) ; Abernathy, Jason (Victoria U.) ; Ablikim, Medina (Beijing, Inst. High Energy Phys.) ; Abramowicz, Halina (Tel Aviv U.) ; Adey, David (Birmingham U.) ; Adloff, Catherine (Annecy, LAPP) et al.
The International Linear Collider (ILC) is a 200-500 GeV center-of-mass high-luminosity linear electron-positron collider, based on 1.3 GHz superconducting radio-frequency (SCRF) accelerating cavities. [...]
arXiv:0712.2361 ; FERMILAB-PUB-07-833-AD.
- 2007 - 339.
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