CERN Accelerating science

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1.
Scaling behaviors of heavy flavor meson suppression and flow in different nuclear collision systems at the LHC / Li, Shu-Qing (Jining U. ; CCNU, Wuhan, Inst. Part. Phys. ; Hua-Zhong Normal U., LQLP) ; Xing, Wen-Jing (CCNU, Wuhan, Inst. Part. Phys. ; Hua-Zhong Normal U., LQLP) ; Wu, Xiang-Yu (CCNU, Wuhan, Inst. Part. Phys. ; Hua-Zhong Normal U., LQLP) ; Cao, Shanshan (SDU, Qingdao) ; Qin, Guang-You (CCNU, Wuhan, Inst. Part. Phys. ; Hua-Zhong Normal U., LQLP)
We explore the system size dependence of heavy-quark-QGP interaction by studying the heavy flavor meson suppression and elliptic flow in Pb-Pb, Xe-Xe, Ar-Ar and O-O collisions at the LHC. The space-time evolution of the QGP is simulated using a (3+1)-dimensional viscous hydrodynamic model, while the heavy-quark-QGP interaction is described by an improved Langevin approach that includes both collisional and radiative energy loss inside a thermal medium. [...]
arXiv:2108.06648.- 2021-11-26 - 10 p. - Published in : Eur. Phys. J. C 81 (2021) 1035 Fulltext: document - PDF; 2108.06648 - PDF;
2.
CEPC Conceptual Design Report: Volume 2 - Physics & Detector / CEPC Study Group Collaboration
The Circular Electron Positron Collider (CEPC) is a large international scientific facility proposed by the Chinese particle physics community to explore the Higgs boson and provide critical tests of the underlying fundamental physics principles of the Standard Model that might reveal new physics. [...]
arXiv:1811.10545 ; IHEP-CEPC-DR-2018-02 ; IHEP-EP-2018-01 ; IHEP-TH-2018-01.
- 2018 - 424.
Fulltext
3.
Comparison of Jet Quenching Formalisms for a Quark-Gluon Plasma "Brick" / Armesto, Nestor (Santiago de Compostela U., IGFAE) ; Cole, Brian (Columbia U.) ; Gale, Charles (McGill U.) ; Horowitz, William A. (Ohio State U. ; Cape Town U.) ; Jacobs, Peter (LBL, Berkeley) ; Jeon, Sangyong (McGill U.) ; van Leeuwen, Marco (Utrecht U.) ; Majumder, Abhijit (Ohio State U.) ; Muller, Berndt (Duke U.) ; Qin, Guang-You (Duke U.) et al.
We review the currently available formalisms for radiative energy loss of a high-momentum parton in a dense strongly interacting medium. The underlying theoretical framework of the four commonly used formalisms is discussed and the differences and commonalities between the formalisms are highlighted. [...]
arXiv:1106.1106.- 2012 - 30 p. - Published in : Phys. Rev. C 86 (2012) 064904 APS Published version, local copy: PDF; Fulltext: PDF; External link: Preprint

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