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Fluid Dynamical Models for Relativistic Nuclear Collisions



dc.contributor.advisorTomášik Boris
dc.contributor.authorJakub Cimerman
dc.date.accessioned2023-05-23T14:19:11Z
dc.date.available2023-05-23T14:19:11Z
dc.date.issued2023-01-27
dc.identifierKOS-957578342605
dc.identifier.urihttp://hdl.handle.net/10467/108256
dc.description.abstractAnotace: Simulations of heavy-ion collisions at energies from few to few tens of GeV are more complex than simulations for LHC, including a longer interpenetration time or a finite baryon density in the fluid. The first part of the dissertation investigates the possibilities of using a hybrid hydrodynamic model built for the LHC energy at energies of the BES program at RHIC. The second part of the dissertation describes the development of a state-of-the-art hybrid model that takes care of all the challenges that occur in the studied energy range.cze
dc.description.abstractAnotace: Simulations of heavy-ion collisions at energies from few to few tens of GeV are more complex than simulations for LHC, including a longer interpenetration time or a finite baryon density in the fluid. The first part of the dissertation investigates the possibilities of using a hybrid hydrodynamic model built for the LHC energy at energies of the BES program at RHIC. The second part of the dissertation describes the development of a state-of-the-art hybrid model that takes care of all the challenges that occur in the studied energy range.eng
dc.publisherČeské vysoké učení technické v Praze. Vypočetní a informační centrum.cze
dc.publisherCzech Technical University in Prague. Computing and Information Centre.eng
dc.rightsA university thesis is a work protected by the Copyright Act. Extracts, copies and transcripts of the thesis are allowed for personal use only and at one?s own expense. The use of thesis should be in compliance with the Copyright Act http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf and the citation ethics http://knihovny.cvut.cz/vychova/vskp.htmleng
dc.rightsVysokoškolská závěrečná práce je dílo chráněné autorským zákonem. Je možné pořizovat z něj na své náklady a pro svoji osobní potřebu výpisy, opisy a rozmnoženiny. Jeho využití musí být v souladu s autorským zákonem http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf a citační etikou http://knihovny.cvut.cz/vychova/vskp.htmlcze
dc.subjectQuark-gluon plasmacze
dc.subjecthydrodynamicscze
dc.subjectbeam-energy scan energiescze
dc.subjecthybrid modelcze
dc.subjectthree-fluid hydrodynamicscze
dc.subjectanisotropic flowcze
dc.subjectQuark-gluon plasmaeng
dc.subjecthydrodynamicseng
dc.subjectbeam-energy scan energieseng
dc.subjecthybrid modeleng
dc.subjectthree-fluid hydrodynamicseng
dc.subjectanisotropic floweng
dc.titleModely dynamiky tekutin pro relativistické jaderné srážkycze
dc.titleFluid Dynamical Models for Relativistic Nuclear Collisionseng
dc.typedisertační prácecze
dc.typedoctoral thesiseng
dc.date.accepted2023-02-01
dc.contributor.refereeDolejší Jiří
theses.degree.disciplineJaderné inženýrstvícze
theses.degree.grantorkatedra fyzikycze
theses.degree.programmeAplikace přírodních vědcze


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