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Computational physics is applied for simulation of relativistic particle-particle and nucleus-nucleus collisions. Both perturbative and non-perturbative methods of Quantum Chromodynamics are used. Monte Carlo simulations of pp- and Pb+Pb- collisions at LHC energies are being made. The main topics of investigation are - signatures of deconfined (Quark Gluon Plasma) - confined matter (Hadronic resonance gas) phase transition and - influence of chiral symmetry restoration on mass of the resonances - general characteristics of particle production like multiplicity, energy-momenta, KNO-scaling, - anisotropic flow (directed and elliptic) of the particles produced in pp and in AA collisions, - femtoscopic correlations and the particle emission zone - freeze-out of the particles - soft and hard particle production - jet production and jet modification (jet-quenching) - photon physics - resonance decays - heavy quark particle production
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论文共 242 篇作者统计合作学者相似作者
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Particlesno. 2 (2024): 416-416
Frontiers in physics (2023)
arxiv(2023)
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A. V. Belyaev,L. V. Bravina, A. Chernyshov,G. Kh. Eyyubova,V. L. Korotkikh,I. P. Lokhtin,L. V. Malinina, D. A. Miagkov,S. V. Petrushanko,A. M. Snigirev,E. E. Zabrodin
Physics of Atomic Nucleino. 6 (2023): 1487-1492
PARTICLESno. 2 (2022): 157-170
arXiv (Cornell University) (2022)
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#Papers: 248
#Citation: 11815
H-Index: 37
G-Index: 107
Sociability: 9
Diversity: 3
Activity: 36
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