CERN Accelerating science

CERN Document Server 3 ჩანაწერია ნაპოვნი  ძიებას დასჭირდა 0.69 წამი. 
1.
Hot QCD White Paper / Arslandok, M. (Yale U.) ; Bass, S.A. (Duke U.) ; Baty, A.A. (Rice U.) ; Bautista, I. (Puebla U., Inst. Fis.) ; Beattie, C. (Yale U.) ; Becattini, F. (Florence U.) ; Bellwied, R. (Houston U.) ; Berdnikov, Y. (St. Petersburg Polytechnic Inst.) ; Berdnikov, A. (St. Petersburg Polytechnic Inst.) ; Bielcik, J. (Prague, Tech. U.) et al.
Hot QCD physics studies the nuclear strong force under extreme temperature and densities. [...]
arXiv:2303.17254.
- 190.
Fulltext
2.
Imaging the initial condition of heavy-ion collisions and nuclear structure across the nuclide chart / Jia, Jiangyong (Stony Brook U.) ; Giacalone, Giuliano (U. Heidelberg, ITP) ; Bally, Benjamin (IRFU, Saclay) ; Brandenburg, James Daniel (Brookhaven Natl. Lab.) ; Heinz, Ulrich (Ohio State U.) ; Huang, Shengli (Stony Brook U.) ; Lee, Dean (Michigan State U.) ; Lee, Yen-Jie (MIT) ; Loizides, Constantin (Oak Ridge) ; Li, Wei (Rice U.) et al.
High-energy nuclear collisions encompass three key stages: the structure of the colliding nuclei informed by low-energy nuclear physics, the initial condition (IC) leading to the formation of quark-gluon plasma (QGP), and the hydrodynamic expansion and hadronization of the QGP leading to final-state hadrons observed experimentally. Recent advances in experimental and theoretical methods have ushered in a precision era, enabling an increasingly accurate understanding of these stages. [...]
arXiv:2209.11042.- 2024-12-11 - 25 p. - Published in : Nucl. Sci. Tech.
Fulltext: 2209.11042 - PDF; document - PDF;
3.
Heavy ions at the Future Circular Collider / Dainese, A. (INFN, Padua) ; Wiedemann, U.A. (CERN) ; Armesto, N. (Santiago de Compostela U.) ; d'Enterria, D. (CERN) ; Jowett, J.M. (CERN) ; Lansberg, J.P. (Orsay, IPN) ; Milhano, J.G. (Lisbon, IST ; CERN) ; Salgado, C.A. (Santiago de Compostela U.) ; Schaumann, M. (CERN) ; van Leeuwen, M. (Utrecht U. ; NIKHEF, Amsterdam) et al.
The Future Circular Collider (FCC) Study is aimed at assessing the physics potential and the technical feasibility of a new collider with centre-of-mass energies, in the hadron-hadron collision mode, seven times larger than the nominal LHC energies. Operating such machine with heavy ions is an option that is being considered in the accelerator design studies. [...]
arXiv:1605.01389; CERN-TH-2016-107; CERN-TH-2016-107.- Geneva Geneva : CERN, CERN, 2017-06-22 - 58 p. - Published in : 10.23731/CYRM-2017-003.635 Fulltext: PDF; Published version from CERN: PDF; External link: Preprint
In : Physics at the FCC-hh, a 100 TeV $pp$ collider, pp.635-692

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